Micron Document
<!DOCTYPE html>
<html class="client-nojs vector-feature-language-in-header-enabled vector-feature-language-in-main-page-header-disabled vector-feature-page-tools-pinned-disabled vector-feature-toc-pinned-clientpref-0 vector-toc-not-available vector-feature-main-menu-pinned-disabled vector-feature-limited-width-clientpref-1 vector-feature-limited-width-content-enabled vector-feature-custom-font-size-clientpref-1 vector-feature-appearance-pinned-clientpref-0 skin-theme-clientpref-day vector-sticky-header-enabled" lang="de" dir="ltr"><head>
<meta charset="UTF-8">
<title>Chlorovirus</title>
<meta name="viewport" content="width=device-width, initial-scale=1.0">
<link rel="icon" type="image/png" href="./_res_/favicon.png">
<link rel="canonical" href="https://de.wikipedia.org/wiki/Chlorovirus"> <link href="./_mw_/ext.cite.styles.css" rel="stylesheet" type="text/css">
<link href="./_mw_/ext.wikimediamessages.styles.css" rel="stylesheet" type="text/css">
<link href="./_mw_/mediawiki.page.gallery.styles.css" rel="stylesheet" type="text/css">
<link href="./_mw_/skins.vector.icons.css" rel="stylesheet" type="text/css">
<link href="./_mw_/skins.vector.search.codex.styles.css" rel="stylesheet" type="text/css">
<link href="./_mw_/skins.vector.styles.css" rel="stylesheet" type="text/css">
<meta name="ResourceLoaderDynamicStyles" content="">
<link href="./_mw_/ext.gadget.citeRef.css" rel="stylesheet" type="text/css">
<link href="./_mw_/ext.gadget.defaultPlainlinks.css" rel="stylesheet" type="text/css">
<link href="./_mw_/ext.gadget.dewikiCommonHide.css" rel="stylesheet" type="text/css">
<link href="./_mw_/ext.gadget.dewikiCommonLayout.css" rel="stylesheet" type="text/css">
<link href="./_mw_/ext.gadget.dewikiCommonStyle.css" rel="stylesheet" type="text/css">
<link href="./_mw_/ext.gadget.dewikiDarkmode.css" rel="stylesheet" type="text/css">
<link href="./_mw_/ext.gadget.dewikiResponsive.css" rel="stylesheet" type="text/css">
<link href="./_mw_/ext.gadget.specialSearch.css" rel="stylesheet" type="text/css">
<link rel="stylesheet" type="text/css" href="./_mw_/site.styles.css">
<link rel="stylesheet" type="text/css" href="./_mw_/noscript.css">
<link rel="stylesheet" type="text/css" href="./_res_/footer.css">
<link rel="stylesheet" type="text/css" href="./_res_/vector-2022.css">
</head>
<body class="skin--responsive skin-vector skin-vector-search-vue mediawiki ltr sitedir-ltr mw-hide-empty-elt ns-0 ns-subject page-Chlorovirus rootpage-Chlorovirus skin-vector-2022 action-view">
<div class="mw-page-container">
<div class="mw-page-container-inner">
<div class="mw-content-container">
<main id="content" class="mw-body">
<header class="mw-body-header vector-page-titlebar">
<h1 id="firstHeading" class="firstHeading mw-first-heading"><i>Chlorovirus</i></h1>
</header>
<a id="top"></a>
<div id="bodyContent" class="vector-body ve-init-mw-desktopArticleTarget-targetContainer" aria-labelledby="firstHeading" data-mw-ve-target-container="">
<div id="contentSub">
<div id="mw-content-subtitle"></div>
</div>
<div id="mw-content-text" class="mw-body-content mw-content-ltr" lang="de" dir="ltr"><div class="mw-content-ltr mw-parser-output" lang="de" dir="ltr"><style data-mw-deduplicate="TemplateStyles:r183054365">
/* start https://de.wikipedia.org/ */


.mw-parser-output .Person{font-variant:small-caps}.mw-parser-output table.taxobox{background:white;border:1px solid #72777d;border-collapse:collapse;clear:right;float:right;margin:1em 0 1em 1em}.mw-parser-output table.taxobox>*>*>th{background:#9bcd9b;border:1px solid #72777d;text-align:center}.mw-parser-output table.taxobox.palaeobox>*>*>th{background:#e7dcc3}.mw-parser-output table.taxobox.parabox>*>*>th{background:#b9b9b9}.mw-parser-output table.taxobox>*>*>td.Person,.mw-parser-output table.taxobox>*>*>td.taxo-name,.mw-parser-output table.taxobox>*>*>td.taxo-bild,.mw-parser-output table.taxobox>*>*>td.taxo-zeit{text-align:center}


/* end https://de.wikipedia.org/ */
</style>
<table cellpadding="2" class="infobox float-right taxobox" id="Vorlage_Infobox_Virus" style="max-width:300px;">
<tbody><tr>
<th><i>Chlorovirus</i>
</th></tr>
<tr>
<td class="taxo-bild" style="font-size:smaller;"><span typeof="mw:File"></span>
<p><i>Paramecium bursaria chlorella virus-1</i><br>mit seinem einzigen <a href="Peplomer" title="Peplomer">Spike</a><sup id="cite_ref-VEtten2019_2-0" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-CC40_3-0" class="reference"><a href="#cite_note-CC40-3"><span class="cite-bracket">[</span>Anm. 1<span class="cite-bracket">]</span></a></sup>
</p>
</td></tr>
<tr>
<th><a href="Virus-Taxonomie" title="Virus-Taxonomie">Systematik</a>
</th></tr>
<tr>
<td>
<table class="toptextcells" style="width:100%;">

<tbody><tr>
<td><i><a href="Systematik_(Biologie)" title="Systematik (Biologie)">Klassifikation</a>:</i>
</td>
<td><a href="Viren" title="Viren">Viren</a>
</td></tr>
<tr>
<td><i><a href="Realm_(Virologie)" title="Realm (Virologie)">Realm</a>:</i>
</td>
<td><i><a href="Varidnaviria" title="Varidnaviria">Varidnaviria</a><sup id="cite_ref-ICTV_MSL#35_1-4" class="reference"><a href="#cite_note-ICTV_MSL#35-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup></i>
</td></tr>


<tr>
<td><i><a href="Reich_(Biologie)" title="Reich (Biologie)">Reich</a>:</i>
</td>
<td><i><a href="Bamfordvirae" title="Bamfordvirae">Bamfordvirae</a><sup id="cite_ref-ICTV_MSL#35_1-3" class="reference"><a href="#cite_note-ICTV_MSL#35-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup></i>
</td></tr>


<tr>
<td><i><a href="Phylum" class="mw-redirect" title="Phylum">Phylum</a>:</i>
</td>
<td><i><a href="Nucleocytoviricota" title="Nucleocytoviricota">Nucleocytoviricota</a><sup id="cite_ref-ICTV_MSL#35_1-2" class="reference"><a href="#cite_note-ICTV_MSL#35-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup></i>
</td></tr>


<tr>
<td><i><a href="Klasse_(Biologie)" title="Klasse (Biologie)">Klasse</a>:</i>
</td>
<td><i><a href="Megaviricetes" class="mw-redirect" title="Megaviricetes">Megaviricetes</a><sup id="cite_ref-ICTV_MSL#35_1-1" class="reference"><a href="#cite_note-ICTV_MSL#35-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup></i>
</td></tr>


<tr>
<td><i><a href="Ordnung_(Biologie)" title="Ordnung (Biologie)">Ordnung</a>:</i>
</td>
<td><i><a href="Algavirales" class="mw-redirect" title="Algavirales">Algavirales</a><sup id="cite_ref-ICTV_MSL#35_1-0" class="reference"><a href="#cite_note-ICTV_MSL#35-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup></i>
</td></tr>


<tr>
<td><i><a href="Familie_(Biologie)" title="Familie (Biologie)">Familie</a>:</i>
</td>
<td><i><a href="Phycodnaviridae" title="Phycodnaviridae">Phycodnaviridae</a></i>
</td></tr>
<tr>
<td><i>ohne Rang:</i>
</td>
<td><i>„</i>Chlorovirus<i>-Typ“</i>
</td></tr>
<tr>
<td><i><a href="Gattung_(Biologie)" title="Gattung (Biologie)">Gattung</a>:</i>
</td>
<td><i>Chlorovirus</i>
</td></tr>





</tbody></table>
</td></tr>
<tr>
<th>Taxonomische Merkmale
</th></tr>
<tr>
<td>
<table class="toptextcells" style="width:100%;">
<tbody><tr>
<td><a href="Genom" title="Genom">Genom</a>:
</td>
<td>dsDNA linear
</td></tr>
<tr>
<td><a href="Baltimore-Klassifikation" class="mw-redirect" title="Baltimore-Klassifikation">Baltimore</a>:
</td>
<td>Gruppe 1
</td></tr>


<tr>
<td><a href="Virush%C3%BClle" title="Virushülle">Hülle</a>:
</td>
<td>vorhanden
</td></tr></tbody></table>
</td></tr>
<tr>
<th><a href="Nomenklatur_(Biologie)" title="Nomenklatur (Biologie)">Wissenschaftlicher Name</a>
</th></tr>
<tr>
<td class="taxo-name"><span lang="en"><i>Chlorovirus</i></span>
</td></tr>


<tr>
<th>Links
</th></tr>
<tr>
<td>
<table class=" toptextcells" style="width:100%;">
<tbody><tr>
<td><span style="white-space:nowrap"><a href="International_Committee_on_Taxonomy_of_Viruses" title="International Committee on Taxonomy of Viruses">ICTV</a> Taxon History:</span>
</td>
<td><a rel="nofollow" class="external text" href="https://ictv.global/taxonomy/taxondetails?taxnode_id=201904292">201904292</a>
</td></tr>
<tr>
<td><a href="National_Center_for_Biotechnology_Information" title="National Center for Biotechnology Information">NCBI</a>&nbsp;Taxonomy:
</td>
<td><a rel="nofollow" class="external text" href="http://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=181083">181083</a>
</td></tr>


<tr>
<td><a href="ViralZone" class="mw-redirect" title="ViralZone">ViralZone</a> <span style="white-space:nowrap">(<a href="Expasy" title="Expasy">Expasy</a>, <a href="Swiss_Institute_of_Bioinformatics" title="Swiss Institute of Bioinformatics">SIB</a>):</span>
</td>
<td style="vertical-align:bottom"><a rel="nofollow" class="external text" href="https://viralzone.expasy.org/588">588</a>
</td></tr>










</tbody></table>
</td></tr></tbody></table>
<p><i><b>Chlorovirus</b></i>, auch <i><b>Chlorellavirus</b></i> genannt, ist eine Gattung von Viren mit doppelsträngigem DNA-<a href="Genom" title="Genom">Genom</a> in der Familie der <i><a href="Phycodnaviridae" title="Phycodnaviridae">Phycodnaviridae</a></i>. Sie gehört damit zum <a href="Phylum" class="mw-redirect" title="Phylum">Phylum</a> <i><a href="Nucleocytoviricota" title="Nucleocytoviricota">Nucleocytoviricota</a></i> (alias <i><a href="Nucleocytoplasmic_large_DNA_viruses" class="mw-redirect" title="Nucleocytoplasmic large DNA viruses">Nucleocytoplasmic large DNA viruses</a></i>, NCLDV).<sup id="cite_ref-4" class="reference"><a href="#cite_note-4"><span class="cite-bracket">[</span>3<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-PMID16516998_5-0" class="reference"><a href="#cite_note-PMID16516998-5"><span class="cite-bracket">[</span>4<span class="cite-bracket">]</span></a></sup>
</p><p>Diese Gattung ist weltweit in Süßwasserumgebungen anzutreffen, wo mikroskopische <a href="Alge" title="Alge">Algen</a> als natürliche Wirte dienen. Es gibt derzeit 19 Spezies in dieser Gattung, einschließlich der der ehemaligen <a href="Typus_(Nomenklatur)" title="Typus (Nomenklatur)">Typusspezies</a> <i>Chlorovirus vanettense</i> (mit Paramecium bursaria Chlorella virus 1).<sup id="cite_ref-ViralZone_6-0" class="reference"><a href="#cite_note-ViralZone-6"><span class="cite-bracket">[</span>5<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-ICTV_7-0" class="reference"><a href="#cite_note-ICTV-7"><span class="cite-bracket">[</span>6<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-8" class="reference"><a href="#cite_note-8"><span class="cite-bracket">[</span>7<span class="cite-bracket">]</span></a></sup> Der Wortbestandteil <i>Chloro-</i> ist abgeleitet von <span style="font-style:normal;font-weight:normal"><a href="Altgriechische_Sprache" title="Altgriechische Sprache">altgriechisch</a></span> <span lang="grc-Grek" class="Grek" style="font-style:normal">χλωρός</span> <style data-mw-deduplicate="TemplateStyles:r261937631">
/* start https://de.wikipedia.org/ */


.mw-parser-output .Latn{font-family:"Akzidenz Grotesk","Arial","Avant Garde Gothic","Calibri","Futura","Geneva","Gill Sans","Helvetica","Lucida Grande","Lucida Sans Unicode","Lucida Grande","Stone Sans","Tahoma","Trebuchet","Univers","Verdana"}


/* end https://de.wikipedia.org/ */
</style><span class="Latn" lang="grc-Latn" style="font-weight:normal;font-style:italic">chlōrós</span>, deutsch <span lang="de" style="font-style:normal;font-weight:normal">‚gelblich‘</span>, ‚grün‘.
</p><p>Das erste <i>Chlorovirus</i> wurde 1981 von Russel H. Meintz, James L. Van Etten, Daniel Kuczmarski, Kit Lee und Barbara Ang entdeckt, als sie versuchten, <a href="Chlorella" title="Chlorella">Chlorella</a>-ähnliche Algen zu kultivieren. Während des Verfahrens wurden <a href="Virion" title="Virion">Viruspartikel</a> (Virionen) in den Zellen 2 bis 6 Stunden nach der anfänglichen Isolierung entdeckt, gefolgt von der <a href="Lyse_(Biologie)" title="Lyse (Biologie)">Lyse</a> (Tod durch Auflösung der Wirtszelle) nach 12 bis 20 Stunden. Dieses Virus wird als HVCV-1 (<i>Hydra viridis Chlorella virus 1</i>) bezeichnet, da in dem Süßwasserpolyp <i><a href="Hydra_viridis" class="mw-redirect" title="Hydra viridis">Hydra viridis</a></i> lebende einzellige Grünalgen (<a href="Zoochlorellen" class="mw-redirect" title="Zoochlorellen">Zoochlorellen</a>) infiziert wurden.<sup id="cite_ref-9" class="reference"><a href="#cite_note-9"><span class="cite-bracket">[</span>8<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-10" class="reference"><a href="#cite_note-10"><span class="cite-bracket">[</span>9<span class="cite-bracket">]</span></a></sup> Vor einiger Zeit wurde festgestellt, dass eine Spezies, das in Seen häufig vorkommende Spezies ATCV-1 (<i>Acanthocystis turfacea chlorella virus 1</i>), auch Menschen infiziert. Genauere Untersuchungen sind aber noch nötig.<sup id="cite_ref-PMID25349393_11-0" class="reference"><a href="#cite_note-PMID25349393-11"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup> Es folgten neuere Studien über die Auswirkungen von Infektionen im Mausmodell.<sup id="cite_ref-PMID25349393_11-1" class="reference"><a href="#cite_note-PMID25349393-11"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Marilyn_S_2016_12-0" class="reference"><a href="#cite_note-Marilyn_S_2016-12"><span class="cite-bracket">[</span>11<span class="cite-bracket">]</span></a></sup>
</p>

<div class="mw-heading mw-heading2"><h2 id="Systematik">Systematik</h2></div>
<div class="mw-heading mw-heading3"><h3 id="Innere_Systematik">Innere Systematik</h3></div>
<p>Das <a href="International_Committee_on_Taxonomy_of_Viruses" title="International Committee on Taxonomy of Viruses">International Committee on Taxonomy of Viruses</a> (ICTV) hat mit Stand 30. April 2024 (<span lang="en">Master Species List</span> #39v1) folgende Spezies anerkannt:<sup id="cite_ref-ICTV_Tax_13-0" class="reference"><a href="#cite_note-ICTV_Tax-13"><span class="cite-bracket">[</span>12<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-ICTV_VMR_14-0" class="reference"><a href="#cite_note-ICTV_VMR-14"><span class="cite-bracket">[</span>13<span class="cite-bracket">]</span></a></sup>
</p><p>Gattung <i><b>Chlorovirus</b></i>
</p>
<ul><li>Spezies <i>Chlorovirus americanus</i> mit Paramecium bursaria Chlorella virus NY2A (PBCV-NY2A)<sup id="cite_ref-Hao2018_15-0" class="reference"><a href="#cite_note-Hao2018-15"><span class="cite-bracket">[</span>14<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Blanc2010_16-0" class="reference"><a href="#cite_note-Blanc2010-16"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies <i>Chlorovirus conductrix</i> mit Paramecium bursaria Chlorella virus A1 (PBCV-A1)<sup id="cite_ref-Hao2018_15-1" class="reference"><a href="#cite_note-Hao2018-15"><span class="cite-bracket">[</span>14<span class="cite-bracket">]</span></a></sup> mit <a href="Prim%C3%A4risolat" title="Primärisolat">Isolaten</a> CVA-1, FR483,<sup id="cite_ref-17" class="reference"><a href="#cite_note-17"><span class="cite-bracket">[</span>16<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Blanc2010_16-1" class="reference"><a href="#cite_note-Blanc2010-16"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup> MT325<sup id="cite_ref-Greiner2018_18-0" class="reference"><a href="#cite_note-Greiner2018-18"><span class="cite-bracket">[</span>17<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies <i>Chlorovirus heliozoae</i> mit <a href="Chlorovirus_ATCV-1" title="Chlorovirus ATCV-1">Acanthocystis turfacea chlorella virus 1</a> (ATCV1, ATCV-1), assoziiert mit <i><a href="Acanthocystis_turfacea" title="Acanthocystis turfacea">Acanthocystis turfacea</a></i><sup id="cite_ref-Greiner2018_18-1" class="reference"><a href="#cite_note-Greiner2018-18"><span class="cite-bracket">[</span>17<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Wilson2017_19-0" class="reference"><a href="#cite_note-Wilson2017-19"><span class="cite-bracket">[</span>18<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Hao2018_15-2" class="reference"><a href="#cite_note-Hao2018-15"><span class="cite-bracket">[</span>14<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Blanc2010_16-2" class="reference"><a href="#cite_note-Blanc2010-16"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies <i>Chlorovirus illinoense</i> mit Paramecium bursaria Chlorella virus IL3A (PBCV-IL3A, IL-3A)</li>
<li>Spezies <i>Chlorovirus newyorkense</i> mit Paramecium bursaria Chlorella virus NYs1 (PBCV-NYs1)<sup id="cite_ref-Hao2018_15-3" class="reference"><a href="#cite_note-Hao2018-15"><span class="cite-bracket">[</span>14<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies <i>Chlorovirus vanettense</i> (ehem. Typus) mit Paramecium bursaria Chlorella virus 1 (PBCV-1), Hauptwirt <i><a href="Paramecium_bursaria" title="Paramecium bursaria">Paramecium bursaria</a></i>,<sup id="cite_ref-Hao2018_15-4" class="reference"><a href="#cite_note-Hao2018-15"><span class="cite-bracket">[</span>14<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Blanc2010_16-3" class="reference"><a href="#cite_note-Blanc2010-16"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Greiner2018_18-2" class="reference"><a href="#cite_note-Greiner2018-18"><span class="cite-bracket">[</span>17<span class="cite-bracket">]</span></a></sup> mit Isolat PBCV1 und Mutante CME6</li></ul>
<p>Anders als früher werden vom ICTV nicht mehr geführt, da unzureichend charakterisiert:
</p>
<ul><li>Spezies „<i>Hydra viridis Chlorella virus 1</i>“ (HVCV-1), Hauptwirt <i><a href="Hydra_viridissima" class="mw-redirect" title="Hydra viridissima">Hydra viridissima</a></i></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus AL1A</i>“ (PBCV-AL1A)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus AL2A</i>“ (PBCV-AL2A)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus BJ2C</i>“ (PBCV-BJ2C)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CA4A</i>“ (PBCV-CA4A)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CA4B</i>“ (PBCV-CA4B)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus NC1A</i>“ (PBCV-NC1A)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus NE8A</i>“ (PBCV-NE8A)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus SC1A</i>“ (PBCV-SC1A)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus XY6E</i>“ (PBCV-XY6E)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus XZ3A</i>“ (PBCV-XZ3A)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus XZ4A</i>“ (PBCV-XZ4A)</li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus XZ4C</i>“ (PBCV-XZ4C)</li></ul>
<p>Dazu kommen weitere Vorschläge, wie:
</p>
<ul><li>Spezies „<i>Acanthocystis turfacea Chlorella virus Br0604L</i>“<sup id="cite_ref-20" class="reference"><a href="#cite_note-20"><span class="cite-bracket">[</span>19<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-1" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus Can0610SP</i>“<sup id="cite_ref-21" class="reference"><a href="#cite_note-21"><span class="cite-bracket">[</span>20<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-2" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus Canal-1</i>“<sup id="cite_ref-22" class="reference"><a href="#cite_note-22"><span class="cite-bracket">[</span>21<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-3" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus GM0701.1</i>“<sup id="cite_ref-23" class="reference"><a href="#cite_note-23"><span class="cite-bracket">[</span>22<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-4" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus MO0605SPH </i>“<sup id="cite_ref-24" class="reference"><a href="#cite_note-24"><span class="cite-bracket">[</span>23<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-5" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus MN0810.1</i>“<sup id="cite_ref-25" class="reference"><a href="#cite_note-25"><span class="cite-bracket">[</span>24<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-6" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus NTS-1</i>“<sup id="cite_ref-26" class="reference"><a href="#cite_note-26"><span class="cite-bracket">[</span>25<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-7" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus NE-JV-2</i>“<sup id="cite_ref-27" class="reference"><a href="#cite_note-27"><span class="cite-bracket">[</span>26<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-8" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus NE-JV-3</i>“<sup id="cite_ref-28" class="reference"><a href="#cite_note-28"><span class="cite-bracket">[</span>27<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Xu2020_29-0" class="reference"><a href="#cite_note-Xu2020-29"><span class="cite-bracket">[</span>28<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus OR0704.3</i>“<sup id="cite_ref-30" class="reference"><a href="#cite_note-30"><span class="cite-bracket">[</span>29<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-9" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus TN603</i>“ (ATCV-TN603)<sup id="cite_ref-31" class="reference"><a href="#cite_note-31"><span class="cite-bracket">[</span>30<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Blanc2010_16-4" class="reference"><a href="#cite_note-Blanc2010-16"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus TN603.4.2</i>“<sup id="cite_ref-32" class="reference"><a href="#cite_note-32"><span class="cite-bracket">[</span>31<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-10" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Acanthocystis turfacea Chlorella virus WI0606</i>“<sup id="cite_ref-33" class="reference"><a href="#cite_note-33"><span class="cite-bracket">[</span>32<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-11" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus AN69C</i>“ (alias „<i>Chlorella virus AN69C</i>“)<sup id="cite_ref-34" class="reference"><a href="#cite_note-34"><span class="cite-bracket">[</span>33<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-12" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus AR158</i>“ (PBCV-AR158)<sup id="cite_ref-35" class="reference"><a href="#cite_note-35"><span class="cite-bracket">[</span>34<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Blanc2010_16-5" class="reference"><a href="#cite_note-Blanc2010-16"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-13" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CZ-2</i>“<sup id="cite_ref-36" class="reference"><a href="#cite_note-36"><span class="cite-bracket">[</span>35<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Xu2020_29-1" class="reference"><a href="#cite_note-Xu2020-29"><span class="cite-bracket">[</span>28<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus AP110A</i>“<sup id="cite_ref-37" class="reference"><a href="#cite_note-37"><span class="cite-bracket">[</span>36<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-14" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus Can18-4</i>“<sup id="cite_ref-38" class="reference"><a href="#cite_note-38"><span class="cite-bracket">[</span>37<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-15" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CVB-1</i>“<sup id="cite_ref-39" class="reference"><a href="#cite_note-39"><span class="cite-bracket">[</span>38<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-16" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CVG-1</i>“<sup id="cite_ref-40" class="reference"><a href="#cite_note-40"><span class="cite-bracket">[</span>39<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-17" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CviKI</i>“<sup id="cite_ref-41" class="reference"><a href="#cite_note-41"><span class="cite-bracket">[</span>40<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-18" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CVK2</i>“ (PBCV-CVK2)<sup id="cite_ref-Andreani2018_42-0" class="reference"><a href="#cite_note-Andreani2018-42"><span class="cite-bracket">[</span>41<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Blanc2010_16-6" class="reference"><a href="#cite_note-Blanc2010-16"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CVM-1</i>“<sup id="cite_ref-43" class="reference"><a href="#cite_note-43"><span class="cite-bracket">[</span>42<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-19" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CVR-1</i>“<sup id="cite_ref-44" class="reference"><a href="#cite_note-44"><span class="cite-bracket">[</span>43<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-20" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CvsA1</i>“<sup id="cite_ref-45" class="reference"><a href="#cite_note-45"><span class="cite-bracket">[</span>44<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-21" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus CZ-2</i>“<sup id="cite_ref-46" class="reference"><a href="#cite_note-46"><span class="cite-bracket">[</span>45<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-22" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus Fr5L</i>“<sup id="cite_ref-47" class="reference"><a href="#cite_note-47"><span class="cite-bracket">[</span>46<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-23" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus IL-5-2s1</i>“<sup id="cite_ref-48" class="reference"><a href="#cite_note-48"><span class="cite-bracket">[</span>47<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-24" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus KS1B</i>“<sup id="cite_ref-49" class="reference"><a href="#cite_note-49"><span class="cite-bracket">[</span>48<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-25" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus MA-1D</i>“<sup id="cite_ref-50" class="reference"><a href="#cite_note-50"><span class="cite-bracket">[</span>49<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-26" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus MA-1E</i>“<sup id="cite_ref-51" class="reference"><a href="#cite_note-51"><span class="cite-bracket">[</span>50<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-27" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus MT325</i>“ (PBCV-MT325)<sup id="cite_ref-Andreani2018_42-1" class="reference"><a href="#cite_note-Andreani2018-42"><span class="cite-bracket">[</span>41<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Blanc2010_16-7" class="reference"><a href="#cite_note-Blanc2010-16"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus NE-JV-1</i>“<sup id="cite_ref-52" class="reference"><a href="#cite_note-52"><span class="cite-bracket">[</span>51<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-28" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus NE-JV-4</i>“ mit Stamm NE-JV4<sup id="cite_ref-53" class="reference"><a href="#cite_note-53"><span class="cite-bracket">[</span>52<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-29" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus NW665.2</i>“<sup id="cite_ref-54" class="reference"><a href="#cite_note-54"><span class="cite-bracket">[</span>53<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-30" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus NY-2B</i>“<sup id="cite_ref-55" class="reference"><a href="#cite_note-55"><span class="cite-bracket">[</span>54<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-31" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus NYs1</i>“<sup id="cite_ref-56" class="reference"><a href="#cite_note-56"><span class="cite-bracket">[</span>55<span class="cite-bracket">]</span></a></sup> mit Stamm NYs-1<sup id="cite_ref-VEtten2019_2-32" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Paramecium bursaria Chlorella virus OR0704.2.2</i>“<sup id="cite_ref-57" class="reference"><a href="#cite_note-57"><span class="cite-bracket">[</span>56<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-33" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li>
<li>Spezies „<i>Chlorella variabilis Virus NC64A</i>“ (s.&nbsp;u.)</li>
<li>Spezies „<i>Chlorella variabilis Virus Syngen</i>“ (s.&nbsp;u., Hauptwirt in der Gattung <i><a href="Chlorella" title="Chlorella">Chlorella</a></i>)</li>
<li>Spezies „<i>Chlorella heliozoae Virus SAG</i>“ (s.&nbsp;u.)</li>
<li>Spezies „<i>Only Syngen Nebraska virus 5</i>“ (OSy-NE5)<sup id="cite_ref-58" class="reference"><a href="#cite_note-58"><span class="cite-bracket">[</span>57<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-VEtten2019_2-34" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Greiner2018_18-3" class="reference"><a href="#cite_note-Greiner2018-18"><span class="cite-bracket">[</span>17<span class="cite-bracket">]</span></a></sup></li></ul>
<p>Phylogenetischer Baum nach Hao Chen et&nbsp;al. (2018):<sup id="cite_ref-Hao2018_15-5" class="reference"><a href="#cite_note-Hao2018-15"><span class="cite-bracket">[</span>14<span class="cite-bracket">]</span></a></sup>
</p>
<table class="klade" style="border-collapse:collapse;line-height:100%;font-size:75%;line-height:100%">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;<i><b>Chlorovirus</b></i>&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;">
<table class="klade" style="border-collapse:collapse;line-height:100%;">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;"><br>
</td>
<td rowspan="2" style="padding-bottom:3px;">
<table class="klade" style="border-collapse:collapse;line-height:100%;">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;"><br>
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p>Acanthocystis turfacea chlorella virus 1 (ATCV1)
</p>
</td></tr>
<tr>
<td style="border-left:2px solid; vertical-align:top;"><br>
</td></tr>
<tr>
<td style="border-left:2px solid; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;&nbsp;&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p>Paramecium bursaria chlorella virus A1 (PBCV CVA-1)
</p>
</td></tr>










































<tr>
<td valign="top"><br>
</td></tr></tbody></table><style data-mw-deduplicate="TemplateStyles:r257636185">
/* start https://de.wikipedia.org/ */


.mw-parser-output .tptable{border-collapse:collapse;font-size:90%;margin:1em 0;max-width:100%;text-align:center;box-sizing:border-box;line-height:130%}.mw-parser-output .tptblxl{border-collapse:collapse;font-size:90%;margin:1em 0;max-width:100%;text-align:center;box-sizing:border-box;line-height:1.5em}.mw-parser-output .tpheader{border:1px solid #999999}.mw-parser-output .tpcaptiont{text-align:center;font-size:90%;vertical-align:top}.mw-parser-output .tpcaptionm{text-align:center;font-size:90%;vertical-align:middle}.mw-parser-output .tpcaptionb{text-align:center;font-size:90%;vertical-align:bottom}.mw-parser-output .tpseed{border:1px solid #999999;background-color:#6C7A93;color:#FFFFFF;height:20px}.mw-parser-output .tpteam{border:1px solid #999999;padding:0 0.5em;text-align:left;height:20px}.mw-parser-output .tpscore{border:1px solid #999999;height:20px}.mw-parser-output .tpgold{background:gold}.mw-parser-output .tpsilver{background:silver}.mw-parser-output .tpbronze{background:#CC9966}.mw-parser-output .tpgroup{text-align:center}.mw-parser-output .tpeditonly{font-size:1px;color:transparent;width:3px}.mw-parser-output .tp0000{border-style:solid;border-width:0 0 0 0}.mw-parser-output .tp0002{border-style:solid;border-width:0 0 0 2px}.mw-parser-output .tp0020{border-style:solid;border-width:0 0 2px 0}.mw-parser-output .tp0022{border-style:solid;border-width:0 0 2px 2px}.mw-parser-output .tp0200{border-style:solid;border-width:0 2px 0 0}.mw-parser-output .tp0202{border-style:solid;border-width:0 2px 0 2px}.mw-parser-output .tp0220{border-style:solid;border-width:0 2px 2px 0}.mw-parser-output .tp0222{border-style:solid;border-width:0 2px 2px 2px}.mw-parser-output .tp2000{border-style:solid;border-width:2px 0 0 0}.mw-parser-output .tp2002{border-style:solid;border-width:2px 0 0 2px}.mw-parser-output .tp2020{border-style:solid;border-width:2px 0 2px 0}.mw-parser-output .tp2022{border-style:solid;border-width:2px 0 2px 2px}.mw-parser-output .tp2200{border-style:solid;border-width:2px 2px 0 0}.mw-parser-output .tp2202{border-style:solid;border-width:2px 2px 0 2px}.mw-parser-output .tp2220{border-style:solid;border-width:2px 2px 2px 0}.mw-parser-output .tpbb{border-bottom:2px solid #777777}.mw-parser-output .tptt{border-top:2px solid #777777}.mw-parser-output .tpbox{border-collapse:collapse;font-size:90%;margin:0;text-align:center;box-sizing:border-box;line-height:120%}.mw-parser-output .tpeditonly{display:none}.mw-parser-output .tpoption{background:#ff9900;margin:0;padding:1px;font-style:italic}@media screen{html.skin-theme-clientpref-night .mw-parser-output .tpseed{border:1px solid #DDDDDD;background:#B6BCC9;color:#000000;height:20px}html.skin-theme-clientpref-night .mw-parser-output .tptable td{border-color:#DDDDDD}html.skin-theme-clientpref-night .mw-parser-output .tpbb{border-bottom:2px solid #DDDDDD}html.skin-theme-clientpref-night .mw-parser-output .tptt{border-top:2px solid #DDDDDD}}


/* end https://de.wikipedia.org/ */
</style>
</td></tr>
<tr>
<td style="border-left:2px solid; vertical-align:top;"><br>
</td></tr>
<tr>
<td style="border-left:2px solid; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;&nbsp;&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;">
<table class="klade" style="border-collapse:collapse;line-height:100%;">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;"><br>
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p>Paramecium bursaria chlorella virus 1 (PBCV1)
</p>
</td></tr>
<tr>
<td style="border-left:2px solid; vertical-align:top;"><br>
</td></tr>
<tr>
<td style="border-left:2px solid; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;&nbsp;&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;">
<table class="klade" style="border-collapse:collapse;line-height:100%;">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;"><br>
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p>Paramecium bursaria chlorella virus NY2 (PBCV-NY2A)
</p>
</td></tr>
<tr>
<td style="border-left:2px solid; vertical-align:top;"><br>
</td></tr>
<tr>
<td style="border-left:2px solid; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;&nbsp;&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p>Paramecium bursaria chlorella virus NYs1 (PBCV NYs1)
</p>
</td></tr>










































<tr>
<td valign="top"><br>
</td></tr></tbody></table>
</td></tr>










































<tr>
<td valign="top"><br>
</td></tr></tbody></table>
</td></tr>










































<tr>
<td valign="top"><br>
</td></tr></tbody></table>
</td></tr>












































<tr>
<td valign="top"><br><span style="display:none;">Vorlage:Klade/Wartung/Style</span>
</td></tr></tbody></table>
<p>Phylogenetischer Baum (Maximum-Likelihood) der Chloroviren (A) und ihrer Algenwirte (B) nach Van Etten <i>at&nbsp;al.</i> (2019) – als Outgroups dienten vier <i>Ostreococcus</i>-Virus-Sequenzen (Gattung <i><a href="Prasinovirus" title="Prasinovirus">Prasinovirus</a></i>) in (A), <i>Parachlorella</i>-Arten in (B).
</p>
<div style="clear:both;"></div>
<p><span typeof="mw:File"></span>
</p>
<div style="clear:both;"></div>
<p>Das Kladogramm der Chloroviren (A) zeigt, dass die Gattung sich in die folgenden Kladen aufteilen lässt:
</p>
<ul><li>NC64A-Viren (mit PBCV-1), Spezies <i>Chlorovirus vanettense</i>, sowie <i>Chlorovirus illinoense</i></li>
<li>SAG-Viren (mit ATCV-1), Spezies <i>Chlorovirus heliozoae</i></li>
<li>PBi-Viren (mit PBCV-A1), Spezies <i>Chlorovirus conductrix</i></li>
<li>NYs1-Viren (mit NYs-1), Spezies <i>Chlorovirus newyorkense</i></li>
<li>OSy-Viren (nur OSy-NE5)</li></ul>
<div class="mw-heading mw-heading3"><h3 id="Äußere_Systematik"><span id=".C3.84u.C3.9Fere_Systematik"></span>Äußere Systematik</h3></div>
<p>Die aktuelle offizielle Systematik ordnet die Gattung <i>Chlorovirus</i> zusammen mit einigen anderen <a href="Algen" class="mw-redirect" title="Algen">Algen</a> parasitierenden <a href="Riesenviren" class="mw-redirect" title="Riesenviren">Riesenviren</a> der Familie <i>Phycodnaviridae</i> innerhalb der Ordnung <i><a href="Algavirales" class="mw-redirect" title="Algavirales">Algavirales</a></i> zu.
</p><p>Neuere Phylogenien könne eine gewisse Verwandtschaft allerdings nur mit den Gattungen <i><a href="Prasinovirus" title="Prasinovirus">Prasinovirus</a></i> und <i><a href="Raphidovirus" title="Raphidovirus">Raphidovirus</a></i> bestätigen.
</p><p><span id="Kladogramm_2019"></span>Für die Klade der <i>Phycodnaviridae</i> vom <i>Chlorovirus</i>-Typ (per Vorschlag =„<i>Prasinoviridae</i>“) ergibt sich nach Koonin <i>et&nbsp;al.</i> (2019)<sup id="cite_ref-Koonin2019_59-0" class="reference"><a href="#cite_note-Koonin2019-59"><span class="cite-bracket">[</span>58<span class="cite-bracket">]</span></a></sup> und Rolland <i>et&nbsp;al.</i> (2019, 2021),<sup id="cite_ref-Rolland2019_60-0" class="reference"><a href="#cite_note-Rolland2019-60"><span class="cite-bracket">[</span>59<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Rolland2021_61-0" class="reference"><a href="#cite_note-Rolland2021-61"><span class="cite-bracket">[</span>60<span class="cite-bracket">]</span></a></sup> ein Stammbaum, in den sich die Dishui-Lake-Phycodnaviren nach Xu (2020)<sup id="cite_ref-Xu2020_29-2" class="reference"><a href="#cite_note-Xu2020-29"><span class="cite-bracket">[</span>28<span class="cite-bracket">]</span></a></sup> ebenfalls integrieren lassen:
</p>
<table class="klade" style="border-collapse:collapse;line-height:100%;font-size:80%;line-height:100%">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;<sup><sup>​</sup></sup><i>Chlorovirus</i>-Typ<sup id="cite_ref-Maruyama2016_62-0" class="reference"><a href="#cite_note-Maruyama2016-62"><span class="cite-bracket">[</span>61<span class="cite-bracket">]</span></a></sup>&nbsp;(„<i>Prasinoviridae</i>“)&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;">
<table class="klade" style="border-collapse:collapse;line-height:100%;">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;<sup>​</sup>&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p><i><b>Chlorovirus</b></i>
</p>
</td></tr>
<tr>
<td style="border-left:2px solid; vertical-align:top;"><br>
</td></tr>
<tr>
<td style="border-left:2px solid; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;<sup>​</sup>&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;">
<table class="klade" style="border-collapse:collapse;line-height:100%;">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;"><br>
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p>„<i>Yellowstone lake phycodnacvirus 1</i>“ („YSLPV1“), „YSLPV2“, „YSLPV3“
</p>
</td></tr>
<tr>
<td style="border-left:2px solid; vertical-align:top;"><br>
</td></tr>
<tr>
<td style="border-left:2px solid; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;<sup><sup><sup>​</sup></sup></sup>&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;">
<table class="klade" style="border-collapse:collapse;line-height:100%;">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;<sup><sup>​</sup></sup>&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;">
<table class="klade" style="border-collapse:collapse;line-height:100%;">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;<sup>​</sup>&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;">
<table class="klade" style="border-collapse:collapse;line-height:100%;">
<tbody><tr>
<td style="min-width:1em; border-bottom:2px solid; vertical-align:bottom; text-align:center;"><br>
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p><i><a href="Prasinovirus" title="Prasinovirus">Prasinovirus</a></i> (BpV1,<sup id="cite_ref-Greiner2018_18-4" class="reference"><a href="#cite_note-Greiner2018-18"><span class="cite-bracket">[</span>17<span class="cite-bracket">]</span></a></sup> MpV1,<sup id="cite_ref-Greiner2018_18-5" class="reference"><a href="#cite_note-Greiner2018-18"><span class="cite-bracket">[</span>17<span class="cite-bracket">]</span></a></sup> „DSLPV3“&nbsp;…)
</p>
</td></tr>
<tr>
<td style="border-left:2px solid; vertical-align:top;"><br>
</td></tr>
<tr>
<td style="border-left:2px solid; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;&nbsp;&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p>„DSLPV2“
</p>
</td></tr>










































<tr>
<td valign="top"><br>
</td></tr></tbody></table>
</td></tr>
<tr>
<td style="border-left:2px solid; vertical-align:top;"><br>
</td></tr>
<tr>
<td style="border-left:2px solid; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;&nbsp;&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p>„DSLPV4“
</p>
</td></tr>










































<tr>
<td valign="top"><br>
</td></tr></tbody></table>
</td></tr>
<tr>
<td style="border-left:2px solid; vertical-align:top;"><br>
</td></tr>
<tr>
<td style="border-left:2px solid; border-bottom:2px solid; vertical-align:bottom; text-align:center;">&nbsp;&nbsp;&nbsp;
</td>
<td rowspan="2" style="padding-bottom:3px;padding-left:0.5em;">
<p>„DSLPV1“<sup id="cite_ref-Greiner2018_18-6" class="reference"><a href="#cite_note-Greiner2018-18"><span class="cite-bracket">[</span>17<span class="cite-bracket">]</span></a></sup>
</p>
</td></tr>










































<tr>
<td valign="top"><br>
</td></tr></tbody></table>
</td></tr>










































<tr>
<td valign="top"><br>
</td></tr></tbody></table>
</td></tr>










































<tr>
<td valign="top"><br>
</td></tr></tbody></table>
</td></tr>












































<tr>
<td valign="top"><br><span style="display:none;">Vorlage:Klade/Wartung/Style</span>
</td></tr></tbody></table>
<p>Schwestergruppe dieser Klade – per Vorschlag Familie „<i>Prasinoviridae</i>“ – wäre dann die Gattung <i><a href="Raphidovirus" title="Raphidovirus">Raphidovirus</a></i>, ebenfalls im Rang einer Familie (mit provisorischem Namen „AG_04“), zusammen bilden sie eine Klade <i>Algavirales</i> <a href="Sensu_stricto" class="mw-redirect" title="Sensu stricto"><i>s.&nbsp;s.</i></a>; andere bisherige <i>Phycodnaviridae</i>-Mitglieder (Gattungen <i><a href="Coccolithovirus" title="Coccolithovirus">Coccolithovirus</a></i>, <i><a href="Phaeovirus" title="Phaeovirus">Phaeovirus</a></i>) werden neuerdings zusammen mit den Gattungen bzw. vorgeschlagenen Gattungen <i><a href="Yaravirus" title="Yaravirus">Yaravirus</a></i>, <i><a href="Medusavirus" title="Medusavirus">Medusavirus</a></i>, „<i><a href="Pandoravirus" title="Pandoravirus">Pandoravirus</a></i>“, „<i><a href="Mollivirus" class="mw-redirect" title="Mollivirus">Mollivirus</a></i>“, „<i><a href="Clandestinovirus" title="Clandestinovirus">Clandestinovirus</a></i>“ (und anderen) verschiedenen Familien einer vorgeschlagenen Ordnung „<i>Pandoravirales</i>“ zugeordnet.<sup id="cite_ref-Aylward2021_63-0" class="reference"><a href="#cite_note-Aylward2021-63"><span class="cite-bracket">[</span>62<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-RZhang2023_64-0" class="reference"><a href="#cite_note-RZhang2023-64"><span class="cite-bracket">[</span>63<span class="cite-bracket">]</span></a></sup> Ein Kladogramm findet sich unter <a href="Phycodnaviridae#Kladogramm_(Zhang)" title="Phycodnaviridae"><i>Phycodnaviridae</i> §Kladogramm (Zhang)</a>.
</p>
<div class="mw-heading mw-heading2"><h2 id="Ökologie"><span id=".C3.96kologie"></span>Ökologie</h2></div>
<p>Chloroviren sind in <a href="S%C3%BC%C3%9Fwasser" title="Süßwasser">Süßwasserumgebungen</a> in allen Teilen der Welt weit verbreitet und wurden aus <a href="Quelle" title="Quelle">Süßwasserquellen</a> in Europa, Asien, Australien sowie Nord- und Südamerika isoliert.<sup id="cite_ref-PMID27068168_65-0" class="reference"><a href="#cite_note-PMID27068168-65"><span class="cite-bracket">[</span>64<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-66" class="reference"><a href="#cite_note-66"><span class="cite-bracket">[</span>65<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Wirte">Wirte</h3></div>
<p>Zu den natürlichen Wirten der Chloroviren zählen verschiedene Arten einzelliger <i>Chlorella</i>-ähnlicher Algen, die <a href="Zoochlorella" class="mw-redirect" title="Zoochlorella">Zoochlorellen</a> genannt werden. Sie sind sehr spezies- und sogar stammspezifisch: Einzelne Virusspezies infizieren typischerweise nur Wirte einer bestimmten Linie (engl. <i>strain</i>). Diese Zoochlorellen bauen im Allgemeinen <a href="Endosymbiose" class="mw-redirect" title="Endosymbiose">endosymbiotische</a> Beziehungen zu größeren <a href="Protozoen" title="Protozoen">Protozoen</a> (<a href="Protist" class="mw-redirect" title="Protist">Protisten</a>) und <a href="Wirbellose" title="Wirbellose">Wirbellosen</a> (Invertebrata) des Süß- oder Salzwassers auf, beispielsweise:
</p>
<ul><li>dem <i><a href="Paramecium_bursaria" title="Paramecium bursaria">Grünen Pantoffeltierchen</a></i> (<i>Paramecium bursaria</i>, ein <a href="Wimpertierchen" title="Wimpertierchen">Wimpertierchen</a> – Ciliophora),</li>
<li>der <i><a href="Gr%C3%BCne_Hydra" title="Grüne Hydra">Grünen Hydra</a></i> (<i>Hydra viridissima</i> alias <i>H. viridis</i>, <a href="Hydrozoa" class="mw-redirect" title="Hydrozoa">Hydrozoa</a>),<sup id="cite_ref-Van_Etten_2016_67-0" class="reference"><a href="#cite_note-Van_Etten_2016-67"><span class="cite-bracket">[</span>66<span class="cite-bracket">]</span></a></sup></li>
<li><i><a href="Acanthocystis_turfacea" title="Acanthocystis turfacea">Acanthocystis turfacea</a></i> (<a href="Hacrobia" title="Hacrobia">Hacrobia</a>: Centroheliozoa, veraltet ‚<a href="Sonnentierchen" title="Sonnentierchen">Sonnentierchen</a>‘, siehe auch <a rel="nofollow" class="external text" href="https://www.arcella.nl/acanthocystis-turfacea">Acanthocystis turfacea</a> auf Microworld).<sup id="cite_ref-Van_Etten_2012_68-0" class="reference"><a href="#cite_note-Van_Etten_2012-68"><span class="cite-bracket">[</span>67<span class="cite-bracket">]</span></a></sup></li></ul>
<p>Während ein einzelner Protist zu einem bestimmten Zeitpunkt bis zu mehrere hundert Algenzellen beherbergen kann, sind frei schwebende Algen sehr anfällig für Chloroviren, was darauf hindeutet, dass eine solche Endosymbiose eine Infektionsresistenz verleiht.<sup id="cite_ref-PMID27821770_69-0" class="reference"><a href="#cite_note-PMID27821770-69"><span class="cite-bracket">[</span>68<span class="cite-bracket">]</span></a></sup>
</p><p>Kürzlich wurde auch festgestellt, dass Chloroviren Menschen infizieren. Die Möglichkeit einer Infektionen von Mäusen wird untersucht (<a href="#Infektion_beim_Menschen">s.&nbsp;u.</a>).<sup id="cite_ref-PMID25349393_11-2" class="reference"><a href="#cite_note-PMID25349393-11"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Vorkommen">Vorkommen</h3></div>
<p>Die Chlorovirus-<a href="Titer_(Medizin)" title="Titer (Medizin)">Titer</a> variieren je nach Jahreszeit und Ort. Aufgrund der reichen genetischen Vielfalt und der hohen Spezialisierung einzelner Virusspezies sind Abweichungen in ihrer <a href="%C3%96kologie" title="Ökologie">Ökologie</a> nicht ungewöhnlich. Dies führt zu spezifischen räumlich-zeitlichen Mustern, die letztendlich vom Lebensstil und der Art des Wirts abhängen. Bisherige Übersichtsdaten zeigten zwei hervorstechende saisonale Häufigkeitsspitzen: für <i>Chlorella variabilis</i> NC64A-Viren im Spätherbst und für <i>Chlorella variabilis Syngen</i>-Viren im späten Frühling bis Mitte des Sommers, was wahrscheinlich auf die Tatsache zurückzuführen ist, dass sie den Wirt gemeinsam haben. Umgekehrt erreichten <i>Chlorella heliozoae</i> SAG-Viren zu verschiedenen Jahreszeiten ihren Höhepunkt und zeigten im Vergleich zu den NC64A- und Syngen-Viren im Allgemeinen eine größere Variabilität der Titer.<sup id="cite_ref-PMID27068168_65-1" class="reference"><a href="#cite_note-PMID27068168-65"><span class="cite-bracket">[</span>64<span class="cite-bracket">]</span></a></sup>
</p><p>Darüber hinaus zeigten Studien, dass Chloroviren eine gewisse Widerstandsfähigkeit gegen den winterlichen Temperaturabfall aufweisen, was durch das Vorhandensein von infektiösen Partikeln (Virionen) unter Eisschichten in einem Regenwassermanagement-Teich in <a href="Ontario" title="Ontario">Ontario</a>, <a href="Kanada" title="Kanada">Kanada</a>, belegt ist.<sup id="cite_ref-70" class="reference"><a href="#cite_note-70"><span class="cite-bracket">[</span>69<span class="cite-bracket">]</span></a></sup> DeLong et&nbsp;al. vermuten 2016, dass Verfolgung durch kleine Krebstiere (<a href="Crustaceen" class="mw-redirect" title="Crustaceen">Crustaceen</a>) eine indirekte Rolle bei der Titerfluktuation spielen kann. Der Abbau von Protistenzellen, die den Verdauungstrakt der Krebstiere passieren, könnte zu einer Freisetzung einer großen Anzahl der einzelligen Algen führen, die – aufgrund des weggefallenen Endsymbiose-Wirts – anfällig für eine Virusinfektion werden.<sup id="cite_ref-PMID27821770_69-1" class="reference"><a href="#cite_note-PMID27821770-69"><span class="cite-bracket">[</span>68<span class="cite-bracket">]</span></a></sup> In Konsequenz hängt die saisonale Häufigkeit von Chloroviren nicht nur von der eigenen Wirtsart ab, sondern auch von vielen anderen Mikroorganismen, dem allgemeinen Nährstoffstatus und ökologischen Rahmenbedingungen.<sup id="cite_ref-Yanai_2009_71-0" class="reference"><a href="#cite_note-Yanai_2009-71"><span class="cite-bracket">[</span>70<span class="cite-bracket">]</span></a></sup>
</p><p>In ihrer Gesamtheit können Chloroviren über den Phytoplanktonumsatz globale biogeochemische Zyklen beeinflussen. Bekannterweise verursacht <i>Chlorella</i> zusammen mit anderen Arten mikroskopischer Algen und <a href="Cyanobakterien" title="Cyanobakterien">Blaugrünbakterien</a> (Cyanobakterien) wie <i><a href="Microcystis" title="Microcystis">Microcystis</a> aeruginosa</i> toxische <a href="Algenbl%C3%BCte" title="Algenblüte">Algenblüten</a>, die in der nördlichen <a href="Erdoberfl%C3%A4che#Gliederung_nach_Hemisphären" title="Erdoberfläche">Hemisphäre</a> (Erdhälfte) üblicherweise von Februar bis Juni dauern. Dies führt zu Sauerstoffmangel und in der Folge zum Tod größerer Organismen in den Süßwasser<a href="Habitat" title="Habitat">lebensräumen</a>.<sup id="cite_ref-72" class="reference"><a href="#cite_note-72"><span class="cite-bracket">[</span>71<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-73" class="reference"><a href="#cite_note-73"><span class="cite-bracket">[</span>72<span class="cite-bracket">]</span></a></sup>
</p><p>Lytische (d.&nbsp;h. zellzerstörende) Infektion einzelliger Algen durch Chloroviren führt zum Abbruch der Algenblüten und anschließender Freisetzung des in den Algenzellen enthaltenen <a href="Kohlenstoff" title="Kohlenstoff">Kohlenstoffs</a>, <a href="Stickstoff" title="Stickstoff">Stickstoffs</a> und <a href="Phosphor" title="Phosphor">Phosphors</a>, die verdünnt letztendlich der Nahrungskette wieder zugeführt werden.<sup id="cite_ref-Yanai_2009_71-1" class="reference"><a href="#cite_note-Yanai_2009-71"><span class="cite-bracket">[</span>70<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading2"><h2 id="Aufbau">Aufbau</h2></div>
<ul class="center gallery mw-gallery-traditional">
<li class="gallerybox" style="width: 235px">
<div class="thumb" style="width: 230px; height: 210px;"><span typeof="mw:File"></span></div>
<div class="gallerytext">Schemazeichnung eines <a href="Virion" title="Virion">Virions</a> der Gattung <i>Chlorovirus</i>, Familie <i>Phycodnaviridae</i> (Querschnitt und Seitenansicht, ohne Dorn und Vertex)</div>
</li>
<li class="gallerybox" style="width: 235px">
<div class="thumb" style="width: 230px; height: 210px;"><span typeof="mw:File"></span></div>
<div class="gallerytext">Genomkarte von PBCV-1.<sup id="cite_ref-VEtten2019_2-35" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-CC40_3-1" class="reference"><a href="#cite_note-CC40-3"><span class="cite-bracket">[</span>Anm. 1<span class="cite-bracket">]</span></a></sup></div>
</li>
<li class="gallerybox" style="width: 235px">
<div class="thumb" style="width: 230px; height: 210px;"><span typeof="mw:File"></span></div>
<div class="gallerytext">Querschnitt der Kryo-EM-Darstellung des <i><a href="Cafeteriavirus" class="mw-redirect" title="Cafeteriavirus">Cafeteriavirus</a></i> CroV, überlagert mit der des <i>Chlorovirus</i> PBCV-1. CroV hat einen größeren Durchmesser der <a href="Virion" title="Virion">Virionen</a> (300&nbsp;<a href="Meter#Gebräuchliche_dezimale_Vielfache" title="Meter">nm</a> vs. 180&nbsp;nm) und seine Kapsidschicht ist dicker (10,5&nbsp;nm vs. 7,5&nbsp;nm). Umrechnung 10&nbsp;<a href="%C3%85ngstr%C3%B6m_(Einheit)" title="Ångström (Einheit)">Å</a> = 1&nbsp;nm<sup id="cite_ref-Xiao2017_74-0" class="reference"><a href="#cite_note-Xiao2017-74"><span class="cite-bracket">[</span>73<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-CC40_3-2" class="reference"><a href="#cite_note-CC40-3"><span class="cite-bracket">[</span>Anm. 1<span class="cite-bracket">]</span></a></sup></div>
</li>
</ul>
<p>Die Virionen der Gattung <i>Chlorovirus</i> haben eine Hülle mit <a href="Ikosaedrisch" class="mw-redirect" title="Ikosaedrisch">ikosaedrischer</a> oder <a href="Sph%C3%A4re_(Mathematik)" title="Sphäre (Mathematik)">sphärischer</a> Geometrie und eine Symmetrie (<a href="Kapsid#Triangulationszahl" title="Kapsid">Triangulationszahl</a>) <span style="white-space:nowrap">T=169</span>. Der Durchmesser beträgt ca. 100–220&nbsp;nm. Das <a href="Genom" title="Genom">Genom</a> ist linear, in der Regel einfach vorhanden und besteht aus doppelsträngiger <a href="DNA" class="mw-redirect" title="DNA">DNA</a> (<a href="DsDNA" class="mw-redirect" title="DsDNA">dsDNA</a>), mit einer Länge von etwa 330&nbsp;<a href="Kilobasenpaar" class="mw-redirect" title="Kilobasenpaar">kb</a>. Die dsDNA ist geschlossen mit einer <a href="Hairpin" class="mw-redirect" title="Hairpin">Hairpin</a> (Haarnadelstruktur) am Ende. Es gibt oft mehrere hundert <a href="Offener_Leserahmen" title="Offener Leserahmen">ORFs</a> (offene Leserahmen, englisch 'open reading frames').<sup id="cite_ref-ViralZone_6-1" class="reference"><a href="#cite_note-ViralZone-6"><span class="cite-bracket">[</span>5<span class="cite-bracket">]</span></a></sup>
</p><p>Die Gattung der Chloroviren <a href="Genetischer_Code" title="Genetischer Code">kodiert</a> in ihrer Gesamtheit in Summe 632 Proteinfamilien, jedes einzelne Virus hat jedoch nur 330–416 Gene, die Proteine kodieren. Chloroviren enthalten in bestimmten Abschnitten ihrer DNA-Sequenz <a href="DNA-Methylierung" title="DNA-Methylierung">methylierte Basen</a>. Einige Chloroviren enthalten auch <a href="Intron" title="Intron">Introns</a> und <a href="Intein" class="mw-redirect" title="Intein">Inteine</a>, obwohl dies innerhalb der Gattung selten ist.<sup id="cite_ref-Van_Etten_2016_67-1" class="reference"><a href="#cite_note-Van_Etten_2016-67"><span class="cite-bracket">[</span>66<span class="cite-bracket">]</span></a></sup>
</p>
<div style="clear:left"></div>
<ul><li>Die Typenspezies <i>Paramecium bursaria Chlorella virus 1</i> (PBCV-1) hat einen Durchmesser von 190&nbsp;nm und eine Fünffach-Achse.<sup id="cite_ref-Van_Etten_2016_67-2" class="reference"><a href="#cite_note-Van_Etten_2016-67"><span class="cite-bracket">[</span>66<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Cristian_F_2016_75-0" class="reference"><a href="#cite_note-Cristian_F_2016-75"><span class="cite-bracket">[</span>74<span class="cite-bracket">]</span></a></sup> Die Verbindungsstelle seines Kopfes weist einen hervorstehenden Dorn (<a href="Peplomer" title="Peplomer">Spike</a>) auf. Dies ist der erste Teil des Virions, das seinen Wirt kontaktiert.<sup id="cite_ref-Van_Etten_2012_68-1" class="reference"><a href="#cite_note-Van_Etten_2012-68"><span class="cite-bracket">[</span>67<span class="cite-bracket">]</span></a></sup> Die Kryo-EM-Aufnahmen von PBCV-1 zeigen die lange schmale zylindrische Spike-Struktur an einem Scheitelpunkt (Vertex) und eine innere Membran (grün), die das Virus-<a href="Genom" title="Genom">Genom</a> asymmetrisch umgibt.<sup id="cite_ref-VEtten2019_2-36" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup> Das äußere <a href="Kapsid" title="Kapsid">Kapsid</a> bedeckt eine einzelne Membran aus einer Lipid-Doppelschicht, die aus dem <a href="Endoplasmatisches_Retikulum" title="Endoplasmatisches Retikulum">endoplasmatischen Retikulum</a> des Wirts gewonnen wird.<sup id="cite_ref-Cristian_F_2016_75-1" class="reference"><a href="#cite_note-Cristian_F_2016-75"><span class="cite-bracket">[</span>74<span class="cite-bracket">]</span></a></sup> Die Genomlänge beträgt 330.611&nbsp;bp, dabei werden vorhergesagt 802 <a href="Protein" title="Protein">Proteine</a> <a href="Genetischer_Code" title="Genetischer Code">kodiert</a>. Der <a href="GC-Gehalt" title="GC-Gehalt">GC-Gehalt</a> liegt bei 40&nbsp;%.<sup id="cite_ref-NeedhamWorden2019S1_76-0" class="reference"><a href="#cite_note-NeedhamWorden2019S1-76"><span class="cite-bracket">[</span>75<span class="cite-bracket">]</span></a></sup> Einige <a href="Kapsomer" title="Kapsomer">Kapsomere</a> auf der äußeren Hülle haben Fasern, die vom Virusteilchen abstehen und die Anheftung an den Wirt unterstützen (vgl. <i><a href="Mimivirus" title="Mimivirus">Mimivirus</a></i>).<sup id="cite_ref-Van_Etten_2016_67-3" class="reference"><a href="#cite_note-Van_Etten_2016-67"><span class="cite-bracket">[</span>66<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Van_Etten_2012_68-2" class="reference"><a href="#cite_note-Van_Etten_2012-68"><span class="cite-bracket">[</span>67<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Claverie2018_77-0" class="reference"><a href="#cite_note-Claverie2018-77"><span class="cite-bracket">[</span>76<span class="cite-bracket">]</span></a></sup></li></ul>
<ul><li><i>Acanthocystis turfacea Chlorella virus 1</i> (AtCV-1, Spezies <i>Chlorovirus heliozoae</i>) hat eine Genomlänge von 288.047&nbsp;bp, es werden vorhergesagt 860 Proteine kodiert und der GC-Gehalt beträgt 49&nbsp;%.<sup id="cite_ref-NeedhamWorden2019S1_76-1" class="reference"><a href="#cite_note-NeedhamWorden2019S1-76"><span class="cite-bracket">[</span>75<span class="cite-bracket">]</span></a></sup></li></ul>
<div class="mw-heading mw-heading2"><h2 id="Replikationszyklus"><span id="Vermehrungszyklus"></span>Replikationszyklus</h2></div>
<ul class="center gallery mw-gallery-traditional">
<li class="gallerybox" style="width: 235px">
<div class="thumb" style="width: 230px; height: 210px;"><span typeof="mw:File"></span></div>
<div class="gallerytext">Die frühen Stadien einer PBCV-1-Infektion von <i>Chlorella</i> ähneln der Infektion von <a href="Bakterien" title="Bakterien">Bakterien</a> mit <a href="Bakteriophagen" title="Bakteriophagen">Phagen</a> der Ordnung <i><a href="Caudovirales" class="mw-redirect" title="Caudovirales">Caudovirales</a></i>.<sup id="cite_ref-Milrot2017_78-0" class="reference"><a href="#cite_note-Milrot2017-78"><span class="cite-bracket">[</span>77<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-CC40_3-3" class="reference"><a href="#cite_note-CC40-3"><span class="cite-bracket">[</span>Anm. 1<span class="cite-bracket">]</span></a></sup></div>
</li>
<li class="gallerybox" style="width: 235px">
<div class="thumb" style="width: 230px; height: 210px;"><span typeof="mw:File"></span></div>
<div class="gallerytext">Vorgeschlagener Replikationszyklus von PBCV-1.<sup id="cite_ref-VEtten2019_2-37" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-CC40_3-4" class="reference"><a href="#cite_note-CC40-3"><span class="cite-bracket">[</span>Anm. 1<span class="cite-bracket">]</span></a></sup></div>
</li>
<li class="gallerybox" style="width: 235px">
<div class="thumb" style="width: 230px; height: 210px;"><span typeof="mw:File"></span></div>
<div class="gallerytext">Ein Modell der <a href="Assemblierung" title="Assemblierung">Assemblierung</a> von PBCV-1 zu infektiösen <a href="Virion" title="Virion">Partikeln</a>. Es zeigt die aus dem Zellkern (Nu) abgeleiteten Zisternen (<span style="font-style:normal;font-weight:normal"><a href="Englische_Sprache" title="Englische Sprache">englisch</a></span> <span lang="en-Latn" style="font-style:italic">cisternae</span>), die mit <a href="Ribosom" title="Ribosom">Ribosomen</a> (rote Kügelchen) dekoriert sind. Sie dienen in den viralen <a href="Viroplasma" title="Viroplasma">Assemblierungszentren</a> als Vorläufer (dunkelblau) für einlagige virale Membranen (hellblau), d.&nbsp;h. als <a href="Kapsid" title="Kapsid">Kapsidstrukturen</a>.<sup id="cite_ref-VEtten2019_2-38" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-CC40_3-5" class="reference"><a href="#cite_note-CC40-3"><span class="cite-bracket">[</span>Anm. 1<span class="cite-bracket">]</span></a></sup></div>
</li>
<li class="gallerybox" style="width: 235px">
<div class="thumb" style="width: 230px; height: 210px;"><span typeof="mw:File"></span></div>
<div class="gallerytext"><a href="Kryoelektronenmikroskopie" title="Kryoelektronenmikroskopie">Kryo-EM</a>-Querschnitt eines <a href="Kapsid" title="Kapsid">Kapsids</a> von PBCV-1. Zwischen der inneren Membran und dem einzigen Scheitelpunkt (Vertex) befindet sich eine Tasche und am Boden des Spikes ein Hohlraum.<sup id="cite_ref-VEtten2019_2-39" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-CC40_3-6" class="reference"><a href="#cite_note-CC40-3"><span class="cite-bracket">[</span>Anm. 1<span class="cite-bracket">]</span></a></sup></div>
</li>
<li class="gallerybox" style="width: 235px">
<div class="thumb" style="width: 230px; height: 210px;"><span typeof="mw:File"></span></div>
<div class="gallerytext"><a href="Kryoelektronenmikroskopie" title="Kryoelektronenmikroskopie">Kryo-EM</a>-Querschnitt eines <a href="Kapsid" title="Kapsid">Kapsids</a> von PBCV-1, das gerade seine DNA in die <a href="Wirtszelle" title="Wirtszelle">Wirtszelle</a> freisetzt.<sup id="cite_ref-VEtten2019_2-40" class="reference"><a href="#cite_note-VEtten2019-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-CC40_3-7" class="reference"><a href="#cite_note-CC40-3"><span class="cite-bracket">[</span>Anm. 1<span class="cite-bracket">]</span></a></sup></div>
</li>
<li class="gallerybox" style="width: 235px">
<div class="thumb" style="width: 230px; height: 210px;"><span typeof="mw:File"></span></div>
<div class="gallerytext"><i>Chlorella</i>-Zellen und <i>Paramecium bursaria Chlorella virus 1</i> (PBCV-1)<sup id="cite_ref-Van_Etten_2012_68-3" class="reference"><a href="#cite_note-Van_Etten_2012-68"><span class="cite-bracket">[</span>67<span class="cite-bracket">]</span></a></sup></div>
</li>
</ul>
<p>Bei <i>Paramecium bursaria chlorella virus 1</i> (PBCV-1), dem Prototyp des Chlorovirus, berührt zunächst der Dorn (Spike) die <a href="Zellwand" title="Zellwand">Zellwand</a> des Wirts.<sup id="cite_ref-79" class="reference"><a href="#cite_note-79"><span class="cite-bracket">[</span>78<span class="cite-bracket">]</span></a></sup> und wird dann durch Fasern unterstützt, um das Virusteilchen (Virion) am Wirt zu sichern. Die Anlagerung von PBCV-1 an seinen Rezeptor ist sehr spezifisch und schränkt den Bereich der möglichen Wirte stark ein. Virusassoziierte Enzyme ermöglichen den Abbau der Wirtszellwand und die interne Membran des Virus verschmilzt mit der Wirtsmembran. Diese Fusion ermöglicht den Transfer der Virus-DNA und von viralen Proteinen in die Wirtszelle und löst auch eine Depolarisation der Wirtsmembran aus.
</p><p>Da PBCV-1 kein Gen für <a href="RNA-Polymerase" class="mw-redirect" title="RNA-Polymerase">RNA-Polymerase</a> besitzt, wandern seine DNA und viralen Proteine in den Zellkern, wo die <a href="Transkription_(Biologie)" title="Transkription (Biologie)">Transkription</a> 5–10 Minuten nach der Infektion beginnt. Es wird angenommen, dass diese schnelle Transkription durch ein Protein ermöglicht wird, das den Transfer der DNA in den Zellkern bewerkstelligt und durch das <i>PBCV-a443r</i>-Gen <a href="Genetischer_Code" title="Genetischer Code">kodiert</a> wird. Es ähnelt Proteinen, die am Durchschleusen durch die Kernmembran in Säugetierzellen beteiligt sind.
</p><p>In dieser frühen Infektionsphase sinkt die (eigene) Transkriptionsrate des Wirts, und die Transkriptionskomponenten des Wirts werden zur Transkription der neuen viralen DNA umprogrammiert. Minuten nach der Infektion beginnt der Abbau der <a href="Chromosom" title="Chromosom">chromosomalen</a> DNA des Wirts. Es wird vermutet, dass dies durch PBCV-1-kodierte und verpackte DNA-<a href="Restriktionsenzym" title="Restriktionsenzym">Restriktionsendonukleasen</a> erfolgt. Durch den Abbau der chromosomalen Wirts-DNA kommt die Transkription des Wirts zum Erliegen.<sup id="cite_ref-80" class="reference"><a href="#cite_note-80"><span class="cite-bracket">[</span>79<span class="cite-bracket">]</span></a></sup>
</p><p>Die virale DNA-Replikation beginnt nach 60 bis 90 Minuten. Etwa 2–3 Stunden nach der Infektion beginnt der Zusammenbau der Virushüllen (<a href="Kapsid" title="Kapsid">Kapside</a>). Dies tritt in lokalisierten Regionen des Zytoplasmas auf, wobei die Viruskapside 3–4 Stunden nach der Erstinfektion beobachtbar sind. 5–6 Stunden nach der PBCV-1-Infektion füllt sich das Zytoplasma der Wirtszelle mit infektiösen Viruspartikeln (der Nachkommenschaft). Kurz danach (6–8 Stunden nach der Infektion) setzt die lokalisierte <a href="Lyse_(Biologie)" title="Lyse (Biologie)">Lyse</a> (Auflösung) der Wirtszelle diese Nachkommen frei. Aus jeder infizierten Zelle werden ca. 1000 Viruspartikel freigesetzt.<sup id="cite_ref-Van_Etten_2012_68-4" class="reference"><a href="#cite_note-Van_Etten_2012-68"><span class="cite-bracket">[</span>67<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading2"><h2 id="Infektion_beim_Menschen">Infektion beim Menschen</h2></div>
<p>Kürzlich wurde <i>Chlorovirus</i> ATCV-1-DNA in menschlichen <a href="Pharynx" class="mw-redirect" title="Pharynx">Pharynx</a>-Proben gefunden. Bis dato war nicht bekannt, dass das Chlorovirus Menschen infizieren könnte, daher ist das Wissen über Infektionen bei Menschen noch sehr begrenzt. Infizierte Personen hatten ein verzögertes Gedächtnis und verringerte Aufmerksamkeit sowie eine verminderte visuelle Verarbeitung und visuelle Motorik. Dies führte insgesamt zu einem Rückgang der Fähigkeit, Aufgaben basierend auf Sehen und räumlichem Denken durchzuführen.<sup id="cite_ref-PMID25349393_11-3" class="reference"><a href="#cite_note-PMID25349393-11"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup>
</p><p>Die Studien zur Infektion von Mäusen mit ATCV-1 zeigten bei infizierten Tieren Veränderungen im <a href="Cyclin-abh%C3%A4ngige_Kinasen" title="Cyclin-abhängige Kinasen">Cdk5</a>-Signalweg,<sup id="cite_ref-81" class="reference"><a href="#cite_note-81"><span class="cite-bracket">[</span>80<span class="cite-bracket">]</span></a></sup> der das Lernen und die Gedächtnisbildung unterstützt, sowie Veränderungen der Genexpression im <a href="Dopamin" title="Dopamin">Dopamin</a>-Signalweg.<sup id="cite_ref-PMID25349393_11-4" class="reference"><a href="#cite_note-PMID25349393-11"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup> Infizierte Mäuse erwiesen sich zudem als weniger sozial und interagierten weniger mit neu eingeführten Begleitmäusen als die gesunde Kontrollgruppe. Sie verbrachten längere Zeit in einem lichtexponierten Bereich der Testkammer, wohingegen die Kontrollmäuse wie üblich die dunkle Seite bevorzugten und das Licht mieden. Dies deutet auf eine Abnahme der Angstzustände bei einer ATCV-1-Infektion hin. Die Testmäuse waren auch weniger in der Lage, ein Objekt zu erkennen, das von seiner vorherigen Position verschoben worden war, was eine Abnahme des räumlichen Referenzspeichers belegt.<sup id="cite_ref-Marilyn_S_2016_12-1" class="reference"><a href="#cite_note-Marilyn_S_2016-12"><span class="cite-bracket">[</span>11<span class="cite-bracket">]</span></a></sup> Wie beim Menschen nimmt die räumliche Aufgabenfähigkeit des Sehzentrums ab.<sup id="cite_ref-PMID25349393_11-5" class="reference"><a href="#cite_note-PMID25349393-11"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-Marilyn_S_2016_12-2" class="reference"><a href="#cite_note-Marilyn_S_2016-12"><span class="cite-bracket">[</span>11<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading2"><h2 id="Anmerkungen">Anmerkungen</h2></div>
<ol class="references" data-mw-group="Anm.">
<li id="cite_note-CC40-3"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-CC40_3-0">a</a></sup> <sup><a href="#cite_ref-CC40_3-1">b</a></sup> <sup><a href="#cite_ref-CC40_3-2">c</a></sup> <sup><a href="#cite_ref-CC40_3-3">d</a></sup> <sup><a href="#cite_ref-CC40_3-4">e</a></sup> <sup><a href="#cite_ref-CC40_3-5">f</a></sup> <sup><a href="#cite_ref-CC40_3-6">g</a></sup> <sup><a href="#cite_ref-CC40_3-7">h</a></sup></span> <span class="reference-text">Das Material wurde von dieser Quelle kopiert, die unter einer <a rel="nofollow" class="external text" href="https://creativecommons.org/licenses/by/4.0/">Creative Commons Attribution 4.0 International License</a> verfügbar ist.</span>
</li>
</ol>
<div class="mw-heading mw-heading2"><h2 id="Literatur">Literatur</h2></div>
<ul><li>Dickson Kinyanyi, George Obiero, Peris W Amwayi, Stephen Mwaniki, Mark Wamalwa: <i>In silico structural and functional prediction of African swine fever virus protein-B263R reveals features of a TATA-binding protein.</i> In: <i>PeerJ.</i> Band 6, Nr. 4, 2018, Artikel e4396, <a href="https://doi.org/10.7717/peerj.4396" class="extiw external" title="doi:10.7717/peerj.4396">doi:10.7717/peerj.4396</a>, S.&nbsp;13, insbesondere Figur.&nbsp;7.</li>
<li>Weijia Zhang, Jinglie Zhou, Taigang Liu, Yongxin Yu, Yingjie Pan, Shuling Yan, Yongjie Wang: <i>Four novel algal virus genomes discovered from Yellowstone Lake metagenomes.</i> In: <i>Scientific Reports.</i> Band 5, 2015, Artikel Nr.&nbsp;15131, <a href="https://doi.org/10.1038/srep15131" class="extiw external" title="doi:10.1038/srep15131">doi:10.1038/srep15131</a>, Abstract.</li></ul>
<div class="mw-heading mw-heading2"><h2 id="Weblinks">Weblinks</h2></div>
<ul><li><a rel="nofollow" class="external text" href="https://viralzone.expasy.org/all_by_species/588.html"><b>Viralzone</b>: Chlorovirus</a></li>
<li><a rel="nofollow" class="external text" href="http://ictvonline.org/virusTaxonomy.asp"><b>ICTV</b></a></li></ul>
<div class="mw-heading mw-heading2"><h2 id="Einzelnachweise">Einzelnachweise</h2></div>
<ol class="references">
<li id="cite_note-ICTV_MSL#35-1"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-ICTV_MSL#35_1-0">a</a></sup> <sup><a href="#cite_ref-ICTV_MSL#35_1-1">b</a></sup> <sup><a href="#cite_ref-ICTV_MSL#35_1-2">c</a></sup> <sup><a href="#cite_ref-ICTV_MSL#35_1-3">d</a></sup> <sup><a href="#cite_ref-ICTV_MSL#35_1-4">e</a></sup></span> <span class="reference-text">ICTV: <a rel="nofollow" class="external text" href="https://talk.ictvonline.org/files/master-species-lists/m/msl/9601">ICTV Master Species List 2019.v1</a>, New MSL including all taxa updates since the 2018b release, March 2020 (MSL #35)</span>
</li>
<li id="cite_note-VEtten2019-2"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-VEtten2019_2-0">a</a></sup> <sup><a href="#cite_ref-VEtten2019_2-1">b</a></sup> <sup><a href="#cite_ref-VEtten2019_2-2">c</a></sup> <sup><a href="#cite_ref-VEtten2019_2-3">d</a></sup> <sup><a href="#cite_ref-VEtten2019_2-4">e</a></sup> <sup><a href="#cite_ref-VEtten2019_2-5">f</a></sup> <sup><a href="#cite_ref-VEtten2019_2-6">g</a></sup> <sup><a href="#cite_ref-VEtten2019_2-7">h</a></sup> <sup><a href="#cite_ref-VEtten2019_2-8">i</a></sup> <sup><a href="#cite_ref-VEtten2019_2-9">j</a></sup> <sup><a href="#cite_ref-VEtten2019_2-10">k</a></sup> <sup><a href="#cite_ref-VEtten2019_2-11">l</a></sup> <sup><a href="#cite_ref-VEtten2019_2-12">m</a></sup> <sup><a href="#cite_ref-VEtten2019_2-13">n</a></sup> <sup><a href="#cite_ref-VEtten2019_2-14">o</a></sup> <sup><a href="#cite_ref-VEtten2019_2-15">p</a></sup> <sup><a href="#cite_ref-VEtten2019_2-16">q</a></sup> <sup><a href="#cite_ref-VEtten2019_2-17">r</a></sup> <sup><a href="#cite_ref-VEtten2019_2-18">s</a></sup> <sup><a href="#cite_ref-VEtten2019_2-19">t</a></sup> <sup><a href="#cite_ref-VEtten2019_2-20">u</a></sup> <sup><a href="#cite_ref-VEtten2019_2-21">v</a></sup> <sup><a href="#cite_ref-VEtten2019_2-22">w</a></sup> <sup><a href="#cite_ref-VEtten2019_2-23">x</a></sup> <sup><a href="#cite_ref-VEtten2019_2-24">y</a></sup> <sup><a href="#cite_ref-VEtten2019_2-25">z</a></sup> <sup><a href="#cite_ref-VEtten2019_2-26">aa</a></sup> <sup><a href="#cite_ref-VEtten2019_2-27">ab</a></sup> <sup><a href="#cite_ref-VEtten2019_2-28">ac</a></sup> <sup><a href="#cite_ref-VEtten2019_2-29">ad</a></sup> <sup><a href="#cite_ref-VEtten2019_2-30">ae</a></sup> <sup><a href="#cite_ref-VEtten2019_2-31">af</a></sup> <sup><a href="#cite_ref-VEtten2019_2-32">ag</a></sup> <sup><a href="#cite_ref-VEtten2019_2-33">ah</a></sup> <sup><a href="#cite_ref-VEtten2019_2-34">ai</a></sup> <sup><a href="#cite_ref-VEtten2019_2-35">aj</a></sup> <sup><a href="#cite_ref-VEtten2019_2-36">ak</a></sup> <sup><a href="#cite_ref-VEtten2019_2-37">al</a></sup> <sup><a href="#cite_ref-VEtten2019_2-38">am</a></sup> <sup><a href="#cite_ref-VEtten2019_2-39">an</a></sup> <sup><a href="#cite_ref-VEtten2019_2-40">ao</a></sup></span> <span class="reference-text">
James L. Van Etten, Irina V. Agarkova, David D. Dunigan: <i>Chloroviruses</i>. In: <i>Viruses.</i> Band 12, Nr.&nbsp;1, Reihe: <i>Viruses Ten-Year Anniversary.</i> 13. Dezember 2019, Band 20, <a href="https://doi.org/10.3390/v12010020" class="extiw external" title="doi:10.3390/v12010020">doi:10.3390/v12010020</a>.</span>
</li>
<li id="cite_note-4"><span class="mw-cite-backlink"><a href="#cite_ref-4">↑</a></span> <span class="reference-text">N. Yutin, Y. I. Wolf, <a href="Eugene_V._Koonin" class="mw-redirect" title="Eugene V. Koonin">Eugene V. Koonin</a>: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Origin of giant viruses from smaller DNA viruses not from a fourth domain of cellular life</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Virology</cite>. 466–467. Jahrgang, Oktober 2014, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>38–52</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1016/j.virol.2014.06.032">10.1016/j.virol.2014.06.032</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/25042053?dopt=Abstract">PMID 25042053</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4325995/">PMC&nbsp;4325995</a> (freier Volltext) – (englisch, <a rel="nofollow" class="external text" href="https://linkinghub.elsevier.com/retrieve/pii/S0042682214003006">elsevier.com</a>).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Abook&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Origin+of+giant+viruses+from+smaller+DNA+viruses+not+from+a+fourth+domain+of+cellular+life&amp;rft.au=N.+Yutin%2C+Y.+I.+Wolf%2C+Eugene+V.+Koonin&amp;rft.btitle=Virology&amp;rft.date=2014-10&amp;rft.doi=10.1016%2Fj.virol.2014.06.032&amp;rft.genre=book&amp;rft.pages=38-52&amp;rft.pmc=4325995&amp;rft.pmid=25042053&amp;rft.volume=466-467.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-PMID16516998-5"><span class="mw-cite-backlink"><a href="#cite_ref-PMID16516998_5-0">↑</a></span> <span class="reference-text">David D. Dunigan, L.&nbsp;A. Fitzgerald, James L. Van Etten: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Phycodnaviruses: a peek at genetic diversity</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Virus Research</cite>. 117. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>1</span>, April 2006, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>119–32</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1016/j.virusres.2006.01.024">10.1016/j.virusres.2006.01.024</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/16516998?dopt=Abstract">PMID 16516998</a> (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Phycodnaviruses%3A+a+peek+at+genetic+diversity&amp;rft.au=David+D.+Dunigan%2C+L.+A.+Fitzgerald%2C+James+L.+Van+Etten&amp;rft.date=2006-04&amp;rft.doi=10.1016%2Fj.virusres.2006.01.024&amp;rft.genre=journal&amp;rft.issue=1&amp;rft.jtitle=Virus+Research&amp;rft.pages=119-32&amp;rft.pmid=16516998&amp;rft.volume=117.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-ViralZone-6"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-ViralZone_6-0">a</a></sup> <sup><a href="#cite_ref-ViralZone_6-1">b</a></sup></span> <span class="reference-text"><span class="cite"><a rel="nofollow" class="external text" href="https://viralzone.expasy.org/588"><i>ViralZone.</i></a> ExPASy,<span class="Abrufdatum"> abgerufen am 23.&nbsp;Dezember 2018</span> (englisch).</span><span style="display: none;" class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&amp;rfr_id=info%3Asid%2Fde.wikipedia.org%3AChlorovirus&amp;rft.title=ViralZone&amp;rft.description=ViralZone&amp;rft.identifier=&amp;rft.publisher=ExPASy&amp;rft.date=&amp;rft.language=en">&nbsp;</span></span>
</li>
<li id="cite_note-ICTV-7"><span class="mw-cite-backlink"><a href="#cite_ref-ICTV_7-0">↑</a></span> <span class="reference-text"><span class="cite">ICTV: <a rel="nofollow" class="external text" href="http://ictvonline.org/virusTaxonomy.asp"><i>Virus Taxonomy.</i></a><span class="Abrufdatum"> Abgerufen am 22.&nbsp;Dezember 2015</span> (englisch).</span><span style="display: none;" class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&amp;rfr_id=info%3Asid%2Fde.wikipedia.org%3AChlorovirus&amp;rft.title=Virus+Taxonomy&amp;rft.description=Virus+Taxonomy&amp;rft.identifier=&amp;rft.creator=ICTV&amp;rft.date=&amp;rft.language=en">&nbsp;</span></span>
</li>
<li id="cite_note-8"><span class="mw-cite-backlink"><a href="#cite_ref-8">↑</a></span> <span class="reference-text"><style data-mw-deduplicate="TemplateStyles:r261891140">
/* start https://de.wikipedia.org/ */


.mw-parser-output .webarchiv-memento a{color:inherit}


/* end https://de.wikipedia.org/ */
</style><a rel="nofollow" class="external text" href="https://web.archive.org/web/20190314023833/https://talk.ictvonline.org/files/master-species-lists/m/msl/7992">ICTV Master Species List 2018a v1</a> (<span class="webarchiv-memento"><a href="Webarchivierung#Begrifflichkeiten" title="Webarchivierung">Memento</a></span> des <style data-mw-deduplicate="TemplateStyles:r250917974">
/* start https://de.wikipedia.org/ */


.mw-parser-output .dewiki-iconexternal>a{background-position:center right!important;background-repeat:no-repeat!important}body.skin-minerva .mw-parser-output .dewiki-iconexternal>a{background-image:url("./_mw_/OOjs_UI_icon_external-link-ltr-progressive.svg")!important;background-size:10px!important;padding-right:13px!important}body.skin-timeless .mw-parser-output .dewiki-iconexternal>a,body.skin-monobook .mw-parser-output .dewiki-iconexternal>a{background-image:url("./_mw_/MediaWiki_external_link_icon.svg")!important;padding-right:13px!important}body.skin-vector .mw-parser-output .dewiki-iconexternal>a{background-image:url("./_mw_/Link.ernal-small-ltr-progressive.svg")!important;background-size:0.857em!important;padding-right:1em!important}


/* end https://de.wikipedia.org/ */
</style><span class="dewiki-iconexternal"><a class="external text" href="https://redirecter.toolforge.org/?url=https%3A%2F%2Ftalk.ictvonline.org%2Ffiles%2Fmaster-species-lists%2Fm%2Fmsl%2F7992">Originals</a></span> vom 14. März 2019 im <i><a href="Internet_Archive" title="Internet Archive">Internet Archive</a></i>) <small class="archiv-bot"><span class="wp_boppel noviewer" aria-hidden="true" role="presentation"><span typeof="mw:File"><span title="i"></span></span></span>&nbsp;<b>Info:</b> Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.</small><span style="display:none"><a rel="nofollow" class="external text" href="http://IABotmemento.invalid/https://talk.ictvonline.org/files/master-species-lists/m/msl/7992">@1</a></span><span style="display:none"><a rel="nofollow" class="external text" href="https://talk.ictvonline.org/files/master-species-lists/m/msl/7992">@2</a></span><span style="display:none">Vorlage:Webachiv/IABot/talk.ictvonline.org</span>, <a href="International_Committee_on_Taxonomy_of_Viruses" title="International Committee on Taxonomy of Viruses">ICTV</a> MSL including all taxa updates since the 2017 release.</span>
</li>
<li id="cite_note-9"><span class="mw-cite-backlink"><a href="#cite_ref-9">↑</a></span> <span class="reference-text">Russel H. Meints, James L. Van Etten, Daniel Kuczmarski, Kit Lee, Barbara Ang: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Viral infection of the symbiotic chlorella-like alga present in Hydra viridis</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Virology</cite>. 113. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>2</span>, September 1981, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>698–703</span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/18635088?dopt=Abstract">PMID 18635088</a> (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Viral+infection+of+the+symbiotic+chlorella-like+alga+present+in+Hydra+viridis&amp;rft.au=Russel+H.%26%2332%3BMeints%2C%26%2332%3BJames+L.%26%2332%3BVan+Etten%2C%26%2332%3BDaniel%26%2332%3BKuczmarski%2C+...&amp;rft.date=1981-09&amp;rft.genre=journal&amp;rft.issue=2&amp;rft.jtitle=Virology&amp;rft.pages=698-703&amp;rft.pmid=18635088&amp;rft.volume=113.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-10"><span class="mw-cite-backlink"><a href="#cite_ref-10">↑</a></span> <span class="reference-text">Ryo Hoshina, Mayumi Shimizu, Yoichi Makino, Yoshihiro Haruyama, Shin-ichiro Ueda, Yutaka Kato, Masahiro Kasahara, Bun-ichiro Ono, Nobutaka Imamura: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Isolation and characterization of a virus (CvV-BW1) that infects symbiotic algae of Paramecium bursaria in Lake Biwa, Japan</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Virology Journal</cite>. 7. Jahrgang, 13.&nbsp;September 2010, <a href="Internationale_Standardnummer_f%C3%BCr_fortlaufende_Sammelwerke" title="Internationale Standardnummer für fortlaufende Sammelwerke">ISSN</a>&nbsp;<span style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://zdb-katalog.de/list.xhtml?t=iss%3D%221743-422X%22&amp;key=cql">1743-422X</a></span>, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>222</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1186/1743-422X-7-222">10.1186/1743-422X-7-222</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/20831832?dopt=Abstract">PMID 20831832</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2949830/">PMC&nbsp;2949830</a> (freier Volltext) – (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Isolation+and+characterization+of+a+virus+%28CvV-BW1%29+that+infects+symbiotic+algae+of+Paramecium+bursaria+in+Lake+Biwa%2C+Japan&amp;rft.au=Ryo%26%2332%3BHoshina%2C%26%2332%3BMayumi%26%2332%3BShimizu%2C%26%2332%3BYoichi%26%2332%3BMakino%2C+...&amp;rft.date=2010-09-13&amp;rft.doi=10.1186%2F1743-422X-7-222&amp;rft.genre=journal&amp;rft.issn=1743-422X&amp;rft.jtitle=Virology+Journal&amp;rft.pages=222&amp;rft.pmc=2949830&amp;rft.pmid=20831832&amp;rft.volume=7.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-PMID25349393-11"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-PMID25349393_11-0">a</a></sup> <sup><a href="#cite_ref-PMID25349393_11-1">b</a></sup> <sup><a href="#cite_ref-PMID25349393_11-2">c</a></sup> <sup><a href="#cite_ref-PMID25349393_11-3">d</a></sup> <sup><a href="#cite_ref-PMID25349393_11-4">e</a></sup> <sup><a href="#cite_ref-PMID25349393_11-5">f</a></sup></span> <span class="reference-text">R. H. Yolken, L. Jones-Brando, D. D. Dunigan, G. Kannan, F. Dickerson, E. Severance, S. Sabunciyan, C. C. Talbot, E. Prandovszky, J. R. Gurnon, I. V. Agarkova, F. Leister, K. L. Gressitt, O. Chen, B. Deuber, F. Ma, M. V. Pletnikov, J. L. Van Etten: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Chlorovirus ATCV-1 is part of the human oropharyngeal virome and is associated with changes in cognitive functions in humans and mice</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Proceedings of the National Academy of Sciences of the United States of America</cite>. 111. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>45</span>, November 2014, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>16106–11</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1073/pnas.1418895111">10.1073/pnas.1418895111</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/25349393?dopt=Abstract">PMID 25349393</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4234575/">PMC&nbsp;4234575</a> (freier Volltext) – (englisch, <a rel="nofollow" class="external text" href="https://www.pnas.org/content/111/45/16106.abstract">pnas.org</a>).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Chlorovirus+ATCV-1+is+part+of+the+human+oropharyngeal+virome+and+is+associated+with+changes+in+cognitive+functions+in+humans+and+mice&amp;rft.au=R.+H.+Yolken%2C+L.+Jones-Brando%2C+D.+D.+Dunigan%2C+...&amp;rft.date=2014-11&amp;rft.doi=10.1073%2Fpnas.1418895111&amp;rft.genre=journal&amp;rft.issue=45&amp;rft.jtitle=Proceedings+of+the+National+Academy+of+Sciences+of+the+United+States+of+America&amp;rft.pages=16106-11&amp;rft.pmc=4234575&amp;rft.pmid=25349393&amp;rft.volume=111.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-Marilyn_S_2016-12"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Marilyn_S_2016_12-0">a</a></sup> <sup><a href="#cite_ref-Marilyn_S_2016_12-1">b</a></sup> <sup><a href="#cite_ref-Marilyn_S_2016_12-2">c</a></sup></span> <span class="reference-text">Marilyn S. Petro, Irina V. Agarkova, Thomas M. Petro: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Effect of Chlorovirus ATCV-1 infection on behavior of C57Bl/6 mice</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Journal of Neuroimmunology</cite>. 297. Jahrgang, August 2016, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>46–55</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1016/j.jneuroim.2016.05.009">10.1016/j.jneuroim.2016.05.009</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/27397075?dopt=Abstract">PMID 27397075</a> (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Abook&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Effect+of+Chlorovirus+ATCV-1+infection+on+behavior+of+C57Bl%2F6+mice&amp;rft.au=Marilyn+S.%26%2332%3BPetro%2C%26%2332%3BIrina+V.%26%2332%3BAgarkova%2C%26%2332%3BThomas+M.%26%2332%3BPetro&amp;rft.btitle=Journal+of+Neuroimmunology&amp;rft.date=2016-08&amp;rft.doi=10.1016%2Fj.jneuroim.2016.05.009&amp;rft.genre=book&amp;rft.pages=46-55&amp;rft.pmid=27397075&amp;rft.volume=297.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-ICTV_Tax-13"><span class="mw-cite-backlink"><a href="#cite_ref-ICTV_Tax_13-0">↑</a></span> <span class="reference-text"><a href="International_Committee_on_Taxonomy_of_Viruses" title="International Committee on Taxonomy of Viruses">ICTV</a>: <a rel="nofollow" class="external text" href="https://ictv.global/taxonomy">Taxonomy Browser</a>.</span>
</li>
<li id="cite_note-ICTV_VMR-14"><span class="mw-cite-backlink"><a href="#cite_ref-ICTV_VMR_14-0">↑</a></span> <span class="reference-text"><a href="International_Committee_on_Taxonomy_of_Viruses" title="International Committee on Taxonomy of Viruses">ICTV</a>: <a rel="nofollow" class="external text" href="https://ictv.global/vmr">Virus Metadata Resource (VMR)</a>.</span>
</li>
<li id="cite_note-Hao2018-15"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Hao2018_15-0">a</a></sup> <sup><a href="#cite_ref-Hao2018_15-1">b</a></sup> <sup><a href="#cite_ref-Hao2018_15-2">c</a></sup> <sup><a href="#cite_ref-Hao2018_15-3">d</a></sup> <sup><a href="#cite_ref-Hao2018_15-4">e</a></sup> <sup><a href="#cite_ref-Hao2018_15-5">f</a></sup></span> <span class="reference-text">
Hao Chen, Weijia Zhang, Xiefei Li, Yingjie Pan, Shuling Yan, Yongjie Wang: <i>The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses</i>. In: <i>BMC Genomics.</i> Dezember 2018, online 15. Januar 2018; <a href="https://doi.org/10.1186/s12864-018-4432-4" class="extiw external" title="doi:10.1186/s12864-018-4432-4">doi:10.1186/s12864-018-4432-4</a>.</span>
</li>
<li id="cite_note-Blanc2010-16"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Blanc2010_16-0">a</a></sup> <sup><a href="#cite_ref-Blanc2010_16-1">b</a></sup> <sup><a href="#cite_ref-Blanc2010_16-2">c</a></sup> <sup><a href="#cite_ref-Blanc2010_16-3">d</a></sup> <sup><a href="#cite_ref-Blanc2010_16-4">e</a></sup> <sup><a href="#cite_ref-Blanc2010_16-5">f</a></sup> <sup><a href="#cite_ref-Blanc2010_16-6">g</a></sup> <sup><a href="#cite_ref-Blanc2010_16-7">h</a></sup></span> <span class="reference-text">Guillaume Blanc, Garry Duncan, Irina Agarkova, Mark Borodovsky, James Gurnon, Alan Kuo, Erika Lindquist, Susan Lucas, Jasmyn Pangilinan, Juergen Polle, Asaf Salamov, Astrid Terry, Takashi Yamada, David D. Dunigan, Igor V. Grigoriev, Jean-Michel Claverie, James L. Van Etten: <a rel="nofollow" class="external text" href="http://www.plantcell.org/content/22/9/2943"><i>The Chlorella variabilis NC64A genome reveals adaptation to photosymbiosis, coevolution with viruses, and cryptic sex</i>.</a> In: <i>Plant Cell</i>, 22, 2010, S.&nbsp;2943–2955, <a href="https://doi.org/10.1105/tpc.110.076406" class="extiw external" title="doi:10.1105/tpc.110.076406">doi:10.1105/tpc.110.076406</a></span>
</li>
<li id="cite_note-17"><span class="mw-cite-backlink"><a href="#cite_ref-17">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=399781">Paramecium bursaria Chlorella virus FR483</a> (Species)</span>
</li>
<li id="cite_note-Greiner2018-18"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Greiner2018_18-0">a</a></sup> <sup><a href="#cite_ref-Greiner2018_18-1">b</a></sup> <sup><a href="#cite_ref-Greiner2018_18-2">c</a></sup> <sup><a href="#cite_ref-Greiner2018_18-3">d</a></sup> <sup><a href="#cite_ref-Greiner2018_18-4">e</a></sup> <sup><a href="#cite_ref-Greiner2018_18-5">f</a></sup> <sup><a href="#cite_ref-Greiner2018_18-6">g</a></sup></span> <span class="reference-text">
Timo Greiner, Anna Moroni, James L. Van Etten, Gerhard Thiel: <a rel="nofollow" class="external text" href="https://www.mdpi.com/1999-4915/10/9/456/htm"><i>Genes for Membrane Transport Proteins: Not So Rare in Viruses</i>.</a> In: <i>MDPI Viruses.</i> Band 10, Nr.&nbsp;9, Special Issue <i>Algae Virus.</i> 26. August 2018, Band 456, <a href="https://doi.org/10.3390/v10090456" class="extiw external" title="doi:10.3390/v10090456">doi:10.3390/v10090456</a>.</span>
</li>
<li id="cite_note-Wilson2017-19"><span class="mw-cite-backlink"><a href="#cite_ref-Wilson2017_19-0">↑</a></span> <span class="reference-text">William H. Wilson, Ilana C. Gilg, Mohammad Moniruzzaman, Erin K. Field, Sergey Koren, Gary R. LeCleir, Joaquín Martínez Martínez, Nicole J. Poulton, Brandon K. Swan, Ramunas Stepanauskas, Steven W. Wilhelm: <i>Genomic exploration of individual giant ocean viruses</i>. In: <i>ISME Journal.</i> Band 11, Nr.&nbsp;8, August 2017, S.&nbsp;1736–1745; <a href="https://doi.org/10.1038/ismej.2017.61" class="extiw external" title="doi:10.1038/ismej.2017.61">doi:10.1038/ismej.2017.61</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5520044/">PMC&nbsp;5520044</a> (freier Volltext), <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/28498373?dopt=Abstract">PMID 28498373</a> (<a href="Englische_Sprache" title="Englische Sprache">englisch</a>). Hier offenbar irrtümlich als <i>Acanthamoeba turfacea Chlorella virus</i> (ATCV) bezeichnet.</span>
</li>
<li id="cite_note-20"><span class="mw-cite-backlink"><a href="#cite_ref-20">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278268">Acanthocystis turfacea Chlorella virus Br0604L</a> (Species)</span>
</li>
<li id="cite_note-21"><span class="mw-cite-backlink"><a href="#cite_ref-21">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278269">Acanthocystis turfacea Chlorella virus Can0610SP</a> (Species)</span>
</li>
<li id="cite_note-22"><span class="mw-cite-backlink"><a href="#cite_ref-22">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278270">Acanthocystis turfacea Chlorella virus Canal-1</a> (Species)</span>
</li>
<li id="cite_note-23"><span class="mw-cite-backlink"><a href="#cite_ref-23">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278271">Acanthocystis turfacea Chlorella virus GM0701.1</a> (Species)</span>
</li>
<li id="cite_note-24"><span class="mw-cite-backlink"><a href="#cite_ref-24">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278273">Acanthocystis turfacea Chlorella virus MO0605SPH</a> (Species)</span>
</li>
<li id="cite_note-25"><span class="mw-cite-backlink"><a href="#cite_ref-25">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278272">Acanthocystis turfacea Chlorella virus MN0810.1</a> (Species)</span>
</li>
<li id="cite_note-26"><span class="mw-cite-backlink"><a href="#cite_ref-26">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278276">Acanthocystis turfacea Chlorella virus NTS-1</a> (Species), <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=2749524">Acanthocystis turfacea Chlorella virus NTS1</a> (Species)</span>
</li>
<li id="cite_note-27"><span class="mw-cite-backlink"><a href="#cite_ref-27">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278274">Acanthocystis turfacea Chlorella virus NE-JV-2</a> (Species)</span>
</li>
<li id="cite_note-28"><span class="mw-cite-backlink"><a href="#cite_ref-28">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278275">Acanthocystis turfacea Chlorella virus NE-JV-3</a> (Species)</span>
</li>
<li id="cite_note-Xu2020-29"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Xu2020_29-0">a</a></sup> <sup><a href="#cite_ref-Xu2020_29-1">b</a></sup> <sup><a href="#cite_ref-Xu2020_29-2">c</a></sup></span> <span class="reference-text">
Shengzhong Xu, Liang Zhou, Xiaosha Liang, Yifan Zhou, Hao Chen, Shuling Yan, Yongjie Wang; Julie K. Pfeiffer (Hrsg.): <i>Novel Cell-Virus-Virophage Tripartite Infection Systems Discovered in the Freshwater Lake Dishui Lake in Shanghai, China</i>. In: <i>Journal of Virology</i>, 18. Mai 2020; <a href="https://doi.org/10.1128/JVI.00149-20" class="extiw external" title="doi:10.1128/JVI.00149-20">doi:10.1128/JVI.00149-20</a>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/32188734?dopt=Abstract">PMID 32188734</a> (<a href="Englische_Sprache" title="Englische Sprache">englisch</a>).</span>
</li>
<li id="cite_note-30"><span class="mw-cite-backlink"><a href="#cite_ref-30">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278277">Acanthocystis turfacea Chlorella virus OR0704.3</a> (Species)</span>
</li>
<li id="cite_note-31"><span class="mw-cite-backlink"><a href="#cite_ref-31">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278278">Acanthocystis turfacea Chlorella virus TN603.4.2</a> (Species)</span>
</li>
<li id="cite_note-32"><span class="mw-cite-backlink"><a href="#cite_ref-32">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278278">Acanthocystis turfacea Chlorella virus TN603.4.2</a> (Species)</span>
</li>
<li id="cite_note-33"><span class="mw-cite-backlink"><a href="#cite_ref-33">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278279">Acanthocystis turfacea Chlorella virus WI0606</a> (Species)</span>
</li>
<li id="cite_note-34"><span class="mw-cite-backlink"><a href="#cite_ref-34">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=240269">Paramecium bursaria Chlorella virus AN69C</a> (Species)</span>
</li>
<li id="cite_note-35"><span class="mw-cite-backlink"><a href="#cite_ref-35">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=380598">Paramecium bursaria Chlorella virus AR158</a> (Species)</span>
</li>
<li id="cite_note-36"><span class="mw-cite-backlink"><a href="#cite_ref-36">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278251">Paramecium bursaria Chlorella virus CZ-2</a> (Species)</span>
</li>
<li id="cite_note-37"><span class="mw-cite-backlink"><a href="#cite_ref-37">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278246">Paramecium bursaria Chlorella virus AP110A</a> (Species)</span>
</li>
<li id="cite_note-38"><span class="mw-cite-backlink"><a href="#cite_ref-38">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278252">Paramecium bursaria Chlorella virus Can18-4</a> (Species)</span>
</li>
<li id="cite_note-39"><span class="mw-cite-backlink"><a href="#cite_ref-39">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278247">Paramecium bursaria Chlorella virus CVB-1</a> (Species)</span>
</li>
<li id="cite_note-40"><span class="mw-cite-backlink"><a href="#cite_ref-40">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278248">Paramecium bursaria Chlorella virus CVG-1</a> (Species)</span>
</li>
<li id="cite_note-41"><span class="mw-cite-backlink"><a href="#cite_ref-41">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278253">Paramecium bursaria Chlorella virus CviKI</a> (Species)</span>
</li>
<li id="cite_note-Andreani2018-42"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Andreani2018_42-0">a</a></sup> <sup><a href="#cite_ref-Andreani2018_42-1">b</a></sup></span> <span class="reference-text">Julien Andreani, Jacques Y. B. Khalil, Emeline Baptiste, Issam Hasni, Caroline Michelle, Didier Raoult, Anthony Levasseur, Bernard La Scola: <a rel="nofollow" class="external text" href="https://www.frontiersin.org/articles/10.3389/fmicb.2017.02643/full"><i>Orpheovirus IHUMI-LCC2: A New Virus among the Giant Viruses</i>.</a> In: <i>Front. Microbiol.</i>, 22. Januar 2018; <a href="https://doi.org/10.3389/fmicb.2017.02643" class="extiw external" title="doi:10.3389/fmicb.2017.02643">doi:10.3389/fmicb.2017.02643</a></span>
</li>
<li id="cite_note-43"><span class="mw-cite-backlink"><a href="#cite_ref-43">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278249">Paramecium bursaria Chlorella virus CVM-1</a> (Species)</span>
</li>
<li id="cite_note-44"><span class="mw-cite-backlink"><a href="#cite_ref-44">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278250">Paramecium bursaria Chlorella virus CVR-1</a> (Species)</span>
</li>
<li id="cite_note-45"><span class="mw-cite-backlink"><a href="#cite_ref-45">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278254">Paramecium bursaria Chlorella virus CvsA1</a> (Species)</span>
</li>
<li id="cite_note-46"><span class="mw-cite-backlink"><a href="#cite_ref-46">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278251">Paramecium bursaria Chlorella virus CZ-2</a> (Species)</span>
</li>
<li id="cite_note-47"><span class="mw-cite-backlink"><a href="#cite_ref-47">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278255">Paramecium bursaria Chlorella virus Fr5L</a> (Species)</span>
</li>
<li id="cite_note-48"><span class="mw-cite-backlink"><a href="#cite_ref-48">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278257">Paramecium bursaria Chlorella virus IL-5-2s1</a> (Species)</span>
</li>
<li id="cite_note-49"><span class="mw-cite-backlink"><a href="#cite_ref-49">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278258">Paramecium bursaria Chlorella virus KS1B</a> (Species)</span>
</li>
<li id="cite_note-50"><span class="mw-cite-backlink"><a href="#cite_ref-50">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278259">Paramecium bursaria Chlorella virus MA-1D</a> (Species)</span>
</li>
<li id="cite_note-51"><span class="mw-cite-backlink"><a href="#cite_ref-51">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278260">Paramecium bursaria Chlorella virus MA-1E</a> (Species)</span>
</li>
<li id="cite_note-52"><span class="mw-cite-backlink"><a href="#cite_ref-52">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278261">Paramecium bursaria Chlorella virus NE-JV-1</a> (Species)</span>
</li>
<li id="cite_note-53"><span class="mw-cite-backlink"><a href="#cite_ref-53">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278262">Paramecium bursaria Chlorella virus NE-JV-4</a> (Species)</span>
</li>
<li id="cite_note-54"><span class="mw-cite-backlink"><a href="#cite_ref-54">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278263">Paramecium bursaria Chlorella virus NW665.2</a> (Species)</span>
</li>
<li id="cite_note-55"><span class="mw-cite-backlink"><a href="#cite_ref-55">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278264">Paramecium bursaria Chlorella virus NY-2B</a> (Species)</span>
</li>
<li id="cite_note-56"><span class="mw-cite-backlink"><a href="#cite_ref-56">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=83442">Paramecium bursaria Chlorella virus NYs1</a> (Species)</span>
</li>
<li id="cite_note-57"><span class="mw-cite-backlink"><a href="#cite_ref-57">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1278265">Paramecium bursaria Chlorella virus OR0704.2.2</a> (Species)</span>
</li>
<li id="cite_note-58"><span class="mw-cite-backlink"><a href="#cite_ref-58">↑</a></span> <span class="reference-text">NCBI: <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=1917232">Only Syngen Nebraska virus 5</a> (Species)</span>
</li>
<li id="cite_note-Koonin2019-59"><span class="mw-cite-backlink"><a href="#cite_ref-Koonin2019_59-0">↑</a></span> <span class="reference-text">
<a href="Eugene_V._Koonin" class="mw-redirect" title="Eugene V. Koonin">Eugene V. Koonin</a>, Natalya Yutin: <i>Evolution of the Large Nucleocytoplasmatic DNA Viruses of Eukaryotes and Convergent Origins of Viral Gigantism</i>. In: <i>Advances in Virus research</i>, Band 103, AP 21. Januar 2019, <a href="https://doi.org/10.1016/bs.aivir.2018.09.002" class="extiw external" title="doi:10.1016/bs.aivir.2018.09.002">doi:10.1016/bs.aivir.2018.09.002</a>, S.&nbsp;167–202. In Fig.&nbsp;4 ist <i>phycodnaviruses</i> wohl im engeren Sinne (<i><a href="Sensu_stricto" class="mw-redirect" title="Sensu stricto">s.&nbsp;s.</a></i>) zu verstehen und dürfte der <i>Chlorovirus</i>/<i>Prasinovirus</i>/‚YLPV‘-Gruppe bei Schulz et&nbsp;al. (2018) entsprechen.</span>
</li>
<li id="cite_note-Rolland2019-60"><span class="mw-cite-backlink"><a href="#cite_ref-Rolland2019_60-0">↑</a></span> <span class="reference-text">
Clara Rolland, Julien Andreani, Amina Cherif Louazani, Sarah Aherfi, Rania Francis, Rodrigo Rodrigues, Ludmila Santos Silva, Dehia Sahmi, Said Mougari, Nisrine Chelkha, Meriem Bekliz, Lorena Silva, Felipe Assis, Fábio Dornas, Jacques Yaacoub Bou Khalil, Isabelle Pagnier, Christelle Desnues, Anthony Levasseur, Philippe Colson, Jônatas Abrahão, Bernard La Scola: <i>Discovery and Further Studies on Giant Viruses at the IHU Mediterranee Infection That Modified the Perception of the Virosphere</i>. In: <i>MDPI</i>: <i>Viruses</i>, Band 11, Nr.&nbsp;4, März/April 2019, pii: E312; <a href="https://doi.org/10.3390/v11040312" class="extiw external" title="doi:10.3390/v11040312">doi:10.3390/v11040312</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6520786/">PMC&nbsp;6520786</a> (freier Volltext), <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/30935049?dopt=Abstract">PMID 30935049</a>, <a rel="nofollow" class="external text" href="https://www.mdpi.com/1999-4915/11/4/312">MDPI</a> (<a href="Englische_Sprache" title="Englische Sprache">englisch</a>); siehe Fig.&nbsp;2a.</span>
</li>
<li id="cite_note-Rolland2021-61"><span class="mw-cite-backlink"><a href="#cite_ref-Rolland2021_61-0">↑</a></span> <span class="reference-text">
Clara Rolland, Julien Andreani, Dehia Sahmi-Bounsiar, Mart Krupovic, Bernard La Scola, Anthony Levasseur: <i>Clandestinovirus: A Giant Virus With Chromatin Proteins and a Potential to Manipulate the Cell Cycle of Its Host </i>Vermamoeba vermiformis<i>.</i> In: <i>Frontiers in Microbiology</i>, Band 12, 10. August 2021, Nr.&nbsp;715608; <a href="https://doi.org/10.3389/fmicb.2021.715608" class="extiw external" title="doi:10.3389/fmicb.2021.715608">doi:10.3389/fmicb.2021.715608</a>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/34447361?dopt=Abstract">PMID 34447361</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8383183/">PMC&nbsp;8383183</a> (freier Volltext) (<a href="Englische_Sprache" title="Englische Sprache">englisch</a>).</span>
</li>
<li id="cite_note-Maruyama2016-62"><span class="mw-cite-backlink"><a href="#cite_ref-Maruyama2016_62-0">↑</a></span> <span class="reference-text">
Fumito Maruyama, Shoko Ueki: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Evolution and Phylogeny of Large DNA Viruses, <i>Mimiviridae</i> and <i>Phycodnaviridae</i> Including Newly Characterized <i>Heterosigma akashiwo Virus</i></cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Frontiers in Microbiology</cite>. 7. Jahrgang, 30.&nbsp;November 2016, <a href="ResearchGate" class="mw-redirect" title="ResearchGate">ResearchGate</a>:<a rel="nofollow" class="external text" href="https://www.researchgate.net/publication/311160794">311160794</a>, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>1942</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.3389/fmicb.2016.01942">10.3389/fmicb.2016.01942</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/27965659?dopt=Abstract">PMID 27965659</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5127864/">PMC&nbsp;5127864</a> (freier Volltext) – (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Abook&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Evolution+and+Phylogeny+of+Large+DNA+Viruses%2C+Mimiviridae%27%27+and+%27%27Phycodnaviridae%27%27+Including+Newly+Characterized+%27%27Heterosigma+akashiwo+Virus&amp;rft.au=Fumito%26%2332%3BMaruyama%2C%26%2332%3BShoko%26%2332%3BUeki&amp;rft.btitle=Frontiers+in+Microbiology&amp;rft.date=2016-11-30&amp;rft.doi=10.3389%2Ffmicb.2016.01942&amp;rft.genre=book&amp;rft.pages=1942&amp;rft.pmc=5127864&amp;rft.pmid=27965659&amp;rft.volume=7.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-Aylward2021-63"><span class="mw-cite-backlink"><a href="#cite_ref-Aylward2021_63-0">↑</a></span> <span class="reference-text">
Frank O. Aylward, Mohammad Moniruzzaman, Anh D. Ha, <a href="Eugene_V._Koonin" class="mw-redirect" title="Eugene V. Koonin">Eugene V. Koonin</a>: <i>A phylogenomic framework for charting the diversity and evolution of giant viruses.</i> In: <i>PLOS Biology</i>, 27. Oktober 2021; <a href="https://doi.org/10.1371/journal.pbio.3001430" class="extiw external" title="doi:10.1371/journal.pbio.3001430">doi:10.1371/journal.pbio.3001430</a> (<a href="Englische_Sprache" title="Englische Sprache">englisch</a>).</span>
</li>
<li id="cite_note-RZhang2023-64"><span class="mw-cite-backlink"><a href="#cite_ref-RZhang2023_64-0">↑</a></span> <span class="reference-text">
Ruixuan Zhang, Masaharu Takemura, Kazuyoshi Murata, Hiroyuki Ogata: <i>“Mamonoviridae”, a proposed new family of the phylum </i>Nucleocytoviricota<i>.</i> In: <i>Archives of Virology.</i> Band 168, Nr.&nbsp;80, 5. Februar 2023; <a href="https://doi.org/10.1007/s00705-022-05633-1" class="extiw external" title="doi:10.1007/s00705-022-05633-1">doi:10.1007/s00705-022-05633-1</a>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/36740641?dopt=Abstract">PMID 36740641</a> (<a href="Englische_Sprache" title="Englische Sprache">englisch</a>).</span>
</li>
<li id="cite_note-PMID27068168-65"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-PMID27068168_65-0">a</a></sup> <sup><a href="#cite_ref-PMID27068168_65-1">b</a></sup></span> <span class="reference-text">C.F. Quispe, O. Sonderman, A. Seng, B. Rasmussen, G. Weber, C. Mueller, D. D. Dunigan, J. L. Van Etten: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Three-year survey of abundance, prevalence and genetic diversity of chlorovirus populations in a small urban lake</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Archives of Virology</cite>. <span style="white-space:nowrap">Band<span style="display:inline-block;width:.2em">&nbsp;</span>161</span>. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>7</span>, Juli 2016, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>1839–1847</span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/27068168?dopt=Abstract">PMID 27068168</a> (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Three-year+survey+of+abundance%2C+prevalence+and+genetic+diversity+of+chlorovirus+populations+in+a+small+urban+lake&amp;rft.au=C.F.+Quispe%2C+O.+Sonderman%2C+A.+Seng%2C+...&amp;rft.date=2016-07&amp;rft.genre=journal&amp;rft.issue=7&amp;rft.jtitle=Archives+of+Virology&amp;rft.pages=1839-1847&amp;rft.pmid=27068168&amp;rft.volume=Band+161.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-66"><span class="mw-cite-backlink"><a href="#cite_ref-66">↑</a></span> <span class="reference-text">S. M. Short: <cite class="lang" lang="en" dir="auto" style="font-style:italic">The ecology of viruses that infect eukaryotic algae</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Environmental Microbiology</cite>. 14. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>9</span>, September 2012, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>2253–2271</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1111/j.1462-2920.2012.02706.x">10.1111/j.1462-2920.2012.02706.x</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/22360532?dopt=Abstract">PMID 22360532</a> (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=The+ecology+of+viruses+that+infect+eukaryotic+algae&amp;rft.au=S.+M.+Short&amp;rft.date=2012-09&amp;rft.doi=10.1111%2Fj.1462-2920.2012.02706.x&amp;rft.genre=journal&amp;rft.issue=9&amp;rft.jtitle=Environmental+Microbiology&amp;rft.pages=2253-2271&amp;rft.pmid=22360532&amp;rft.volume=14.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-Van_Etten_2016-67"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Van_Etten_2016_67-0">a</a></sup> <sup><a href="#cite_ref-Van_Etten_2016_67-1">b</a></sup> <sup><a href="#cite_ref-Van_Etten_2016_67-2">c</a></sup> <sup><a href="#cite_ref-Van_Etten_2016_67-3">d</a></sup></span> <span class="reference-text">James L. Van Etten, David D. Dunigan, Richard C. Condit: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Giant Chloroviruses: Five Easy Questions</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">PLOS Pathogens</cite>. 12. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>8</span>, 18.&nbsp;August 2016, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>e1005751</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1371/journal.ppat.1005751">10.1371/journal.ppat.1005751</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/27536965?dopt=Abstract">PMID 27536965</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4990331/">PMC&nbsp;4990331</a> (freier Volltext) – (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Giant+Chloroviruses%3A+Five+Easy+Questions&amp;rft.au=James+L.%26%2332%3BVan+Etten%2C%26%2332%3BDavid+D.%26%2332%3BDunigan%2C%26%2332%3BRichard+C.%26%2332%3BCondit&amp;rft.date=2016-08-18&amp;rft.doi=10.1371%2Fjournal.ppat.1005751&amp;rft.genre=journal&amp;rft.issue=8&amp;rft.jtitle=PLOS+Pathogens&amp;rft.pages=e1005751&amp;rft.pmc=4990331&amp;rft.pmid=27536965&amp;rft.volume=12.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-Van_Etten_2012-68"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Van_Etten_2012_68-0">a</a></sup> <sup><a href="#cite_ref-Van_Etten_2012_68-1">b</a></sup> <sup><a href="#cite_ref-Van_Etten_2012_68-2">c</a></sup> <sup><a href="#cite_ref-Van_Etten_2012_68-3">d</a></sup> <sup><a href="#cite_ref-Van_Etten_2012_68-4">e</a></sup></span> <span class="reference-text">James L. Van Etten, David D. Dunigan: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Chloroviruses: not your everyday plant virus</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Trends in Plant Science</cite>. 17. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>1</span>, Januar 2012, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>1–8</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1016/j.tplants.2011.10.005">10.1016/j.tplants.2011.10.005</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/22100667?dopt=Abstract">PMID 22100667</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3259250/">PMC&nbsp;3259250</a> (freier Volltext) – (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Chloroviruses%3A+not+your+everyday+plant+virus&amp;rft.au=James+L.+Van+Etten%2C+David+D.+Dunigan&amp;rft.date=2012-01&amp;rft.doi=10.1016%2Fj.tplants.2011.10.005&amp;rft.genre=journal&amp;rft.issue=1&amp;rft.jtitle=Trends+in+Plant+Science&amp;rft.pages=1-8&amp;rft.pmc=3259250&amp;rft.pmid=22100667&amp;rft.volume=17.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-PMID27821770-69"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-PMID27821770_69-0">a</a></sup> <sup><a href="#cite_ref-PMID27821770_69-1">b</a></sup></span> <span class="reference-text">J.&nbsp;P. DeLong, Z. Al-Ameeli, G. Duncan, James L. Van Etten, David D. Dunigan: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Predators catalyze an increase in chloroviruses by foraging on the symbiotic hosts of zoochlorellae</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Proceedings of the National Academy of Sciences of the United States of America</cite>. 113. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>48</span>, November 2016, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>13780–13784</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1073/pnas.1613843113">10.1073/pnas.1613843113</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/27821770?dopt=Abstract">PMID 27821770</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5137705/">PMC&nbsp;5137705</a> (freier Volltext) – (englisch, <a rel="nofollow" class="external text" href="https://www.pnas.org/content/113/48/13780">pnas.org</a>).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Predators+catalyze+an+increase+in+chloroviruses+by+foraging+on+the+symbiotic+hosts+of+zoochlorellae&amp;rft.au=J.+P.+DeLong%2C+Z.+Al-Ameeli%2C+G.+Duncan%2C+...&amp;rft.date=2016-11&amp;rft.doi=10.1073%2Fpnas.1613843113&amp;rft.genre=journal&amp;rft.issue=48&amp;rft.jtitle=Proceedings+of+the+National+Academy+of+Sciences+of+the+United+States+of+America&amp;rft.pages=13780-13784&amp;rft.pmc=5137705&amp;rft.pmid=27821770&amp;rft.volume=113.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-70"><span class="mw-cite-backlink"><a href="#cite_ref-70">↑</a></span> <span class="reference-text">A. M. Long, S. M. Short: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Seasonal determinations of algal virus decay rates reveal overwintering in a temperate freshwater pond</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">The ISME Journal</cite>. 10. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>7</span>, Juli 2016, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>1602–1612</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1038/ismej.2015.240">10.1038/ismej.2015.240</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/26943625?dopt=Abstract">PMID 26943625</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4918447/">PMC&nbsp;4918447</a> (freier Volltext) – (englisch, <a rel="nofollow" class="external text" href="https://www.nature.com/articles/ismej2015240">nature.com</a>).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Seasonal+determinations+of+algal+virus+decay+rates+reveal+overwintering+in+a+temperate+freshwater+pond&amp;rft.au=A.+M.+Long%2C+S.+M.+Short&amp;rft.date=2016-07&amp;rft.doi=10.1038%2Fismej.2015.240&amp;rft.genre=journal&amp;rft.issue=7&amp;rft.jtitle=The+ISME+Journal&amp;rft.pages=1602-1612&amp;rft.pmc=4918447&amp;rft.pmid=26943625&amp;rft.volume=10.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-Yanai_2009-71"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Yanai_2009_71-0">a</a></sup> <sup><a href="#cite_ref-Yanai_2009_71-1">b</a></sup></span> <span class="reference-text">GM Yanai: <a rel="nofollow" class="external text" href="https://digitalcommons.unl.edu/bioscidiss/5/">Transcription analysis of the chlorovirus Paramecium bursaria chlorella virus-1</a> (PhD). University of Nebraska at Lincoln, 2009.</span>
</li>
<li id="cite_note-72"><span class="mw-cite-backlink"><a href="#cite_ref-72">↑</a></span> <span class="reference-text">H. Song, M. Lavoie, X. Fan, H. Tan, G. Liu, P. Xu, Z. Fu, H. W. Paerl, H. Qian: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Allelopathic interactions of linoleic acid and nitric oxide increase the competitive ability of Microcystis aeruginosa</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">The ISME Journal</cite>. 11. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>8</span>, August 2017, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>1865–1876</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1038/ismej.2017.45">10.1038/ismej.2017.45</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/28398349?dopt=Abstract">PMID 28398349</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5520033/">PMC&nbsp;5520033</a> (freier Volltext) – (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Allelopathic+interactions+of+linoleic+acid+and+nitric+oxide+increase+the+competitive+ability+of+Microcystis+aeruginosa&amp;rft.au=H.+Song%2C+M.+Lavoie%2C+X.+Fan%2C+...&amp;rft.date=2017-08&amp;rft.doi=10.1038%2Fismej.2017.45&amp;rft.genre=journal&amp;rft.issue=8&amp;rft.jtitle=The+ISME+Journal&amp;rft.pages=1865-1876&amp;rft.pmc=5520033&amp;rft.pmid=28398349&amp;rft.volume=11.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-73"><span class="mw-cite-backlink"><a href="#cite_ref-73">↑</a></span> <span class="reference-text">M Rieper: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Investigations on the relationships between algal blooms and bacterial populations in the Schlei Fjord (western Baltic Sea)</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Helgoländer wissenschaftliche Meeresuntersuchungen</cite>. 28. Jahrgang, <span style="white-space:nowrap">Nr.<span style="display:inline-block;width:.2em">&nbsp;</span>1</span>, 1.&nbsp;März 1976, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>1–18</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1007/BF01610792">10.1007/BF01610792</a></span> (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Investigations+on+the+relationships+between+algal+blooms+and+bacterial+populations+in+the+Schlei+Fjord+%28western+Baltic+Sea%29&amp;rft.au=M+Rieper&amp;rft.date=1976-03-01&amp;rft.doi=10.1007%2FBF01610792&amp;rft.genre=journal&amp;rft.issue=1&amp;rft.jtitle=Helgol%C3%A4nder+wissenschaftliche+Meeresuntersuchungen&amp;rft.pages=1-18&amp;rft.volume=28.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-Xiao2017-74"><span class="mw-cite-backlink"><a href="#cite_ref-Xiao2017_74-0">↑</a></span> <span class="reference-text">
Chuan Xiao, Matthias G. Fischer, Duer M. Bolotaulo, Nancy Ulloa-Rondeau, Gustavo A. Avila, Curtis A. Suttle: <a rel="nofollow" class="external text" href="https://www.nature.com/articles/s41598-017-05824-w"><i>Cryo-EM reconstruction of the Cafeteria roenbergensis virus capsid suggests novel assembly pathway for giant viruses</i>.</a> In: <i><a href="Nature" title="Nature">Nature</a> Scientific Reports.</i> Band 7, Nr.&nbsp;5484, 14. Juli 2017; <a href="https://doi.org/10.1038/s41598-017-05824-w" class="extiw external" title="doi:10.1038/s41598-017-05824-w">doi:10.1038/s41598-017-05824-w</a>.</span>
</li>
<li id="cite_note-Cristian_F_2016-75"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-Cristian_F_2016_75-0">a</a></sup> <sup><a href="#cite_ref-Cristian_F_2016_75-1">b</a></sup></span> <span class="reference-text">Cristian F. Quispe, Ahmed Esmael, Olivia Sonderman, Michelle McQuinn, Irina Agarkova, Mohammed Battah, Garry A. Duncan, David D. Dunigan, Timothy P.&nbsp;L. Smith, Cristina De Castro, Immacolata Speciale, Fangrui Ma, James L. Van Etten: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Characterization of a new chlorovirus type with permissive and non-permissive features on phylogenetically related algal strains</cite>. In: <cite class="lang" lang="en" dir="auto" style="font-style:italic">Virology</cite>. 500. Jahrgang, Januar 2017, <span style="white-space:nowrap">S.<span style="display:inline-block;width:.2em">&nbsp;</span>103–113</span>, <a href="Digital_Object_Identifier" title="Digital Object Identifier">doi</a>:<span class="uri-handle" style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://doi.org/10.1016/j.virol.2016.10.013">10.1016/j.virol.2016.10.013</a></span>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/27816636?dopt=Abstract">PMID 27816636</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5127778/">PMC&nbsp;5127778</a> (freier Volltext) – (englisch).<span class="Z3988" title="ctx_ver=Z39.88-2004&amp;rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Abook&amp;rfr_id=info:sid/de.wikipedia.org:Chlorovirus&amp;rft.atitle=Characterization+of+a+new+chlorovirus+type+with+permissive+and+non-permissive+features+on+phylogenetically+related+algal+strains&amp;rft.au=Cristian+F.%26%2332%3BQuispe%2C%26%2332%3BAhmed%26%2332%3BEsmael%2C%26%2332%3BOlivia%26%2332%3BSonderman%2C+...&amp;rft.btitle=Virology&amp;rft.date=2017-01&amp;rft.doi=10.1016%2Fj.virol.2016.10.013&amp;rft.genre=book&amp;rft.pages=103-113&amp;rft.pmc=5127778&amp;rft.pmid=27816636&amp;rft.volume=500.+Jahrgang" style="display:none">&nbsp;</span></span>
</li>
<li id="cite_note-NeedhamWorden2019S1-76"><span class="mw-cite-backlink">↑ <sup><a href="#cite_ref-NeedhamWorden2019S1_76-0">a</a></sup> <sup><a href="#cite_ref-NeedhamWorden2019S1_76-1">b</a></sup></span> <span class="reference-text">David M. Needham, Alexandra Z. Worden et&nbsp;al.: <a rel="nofollow" class="external text" href="https://web.archive.org/web/20190926001142/https://www.pnas.org/content/early/2019/09/17/1907517116"><i>A distinct lineage of giant viruses brings a rhodopsin photosystem to unicellular marine predators</i>.</a> (<span class="webarchiv-memento"><a href="Webarchivierung#Begrifflichkeiten" title="Webarchivierung">Memento</a></span> des <span class="dewiki-iconexternal"><a class="external text" href="https://redirecter.toolforge.org/?url=https%3A%2F%2Fwww.pnas.org%2Fcontent%2Fearly%2F2019%2F09%2F17%2F1907517116">Originals</a></span> vom 26. September 2019 im <i><a href="Internet_Archive" title="Internet Archive">Internet Archive</a></i>) <small class="archiv-bot"><span class="wp_boppel noviewer" aria-hidden="true" role="presentation"><span typeof="mw:File"><span title="i"></span></span></span>&nbsp;<b>Info:</b> Der Archivlink wurde automatisch eingesetzt und noch nicht geprüft. Bitte prüfe Original- und Archivlink gemäß Anleitung und entferne dann diesen Hinweis.</small><span style="display:none"><a rel="nofollow" class="external text" href="http://IABotmemento.invalid/https://www.pnas.org/content/early/2019/09/17/1907517116">@1</a></span><span style="display:none"><a rel="nofollow" class="external text" href="https://www.pnas.org/content/early/2019/09/17/1907517116">@2</a></span><span style="display:none">Vorlage:Webachiv/IABot/www.pnas.org</span> In: <i>PNAS</i>, 23. September 2019, <a href="https://doi.org/10.1073/pnas.1907517116" class="extiw external" title="doi:10.1073/pnas.1907517116">doi:10.1073/pnas.1907517116</a>, <span class="-print"><a href="Internationale_Standardnummer_f%C3%BCr_fortlaufende_Sammelwerke" title="Internationale Standardnummer für fortlaufende Sammelwerke">ISSN</a>&nbsp;<span style="white-space:nowrap"><a rel="nofollow" class="external text" href="https://zdb-katalog.de/list.xhtml?t=iss%3D%220027-8424%22&amp;key=cql">0027-8424</a></span></span>, hier: <a rel="nofollow" class="external text" href="https://www.pnas.org/highwire/filestream/889196/field_highwire_adjunct_files/1/pnas.1907517116.sd01.xlsx">Supplement 1 (xlsx)</a><span style="display:none"><a rel="nofollow" class="external text" href="http://IABotdeadurl.invalid/https://www.pnas.org/highwire/filestream/889196/field_highwire_adjunct_files/1/pnas.1907517116.sd01.xlsx">@1</a></span><span style="display:none"><a rel="nofollow" class="external text" href="https://www.pnas.org/highwire/filestream/889196/field_highwire_adjunct_files/1/pnas.1907517116.sd01.xlsx">@2</a></span><span style="display:none">Vorlage:Toter Link/www.pnas.org</span> <small>(Seite nicht mehr abrufbar, festgestellt im Oktober 2022. <a rel="nofollow" class="external text" href="http://timetravel.mementoweb.org/list/2010/https://www.pnas.org/highwire/filestream/889196/field_highwire_adjunct_files/1/pnas.1907517116.sd01.xlsx">Suche in Webarchiven</a>)</small>&nbsp;<small class="archiv-bot"><span class="wp_boppel noviewer" aria-hidden="true" role="presentation"><span typeof="mw:File"><span title="i"></span></span></span>&nbsp;<b>Info:</b> Der Link wurde automatisch als defekt markiert. Bitte prüfe den Link gemäß Anleitung und entferne dann diesen Hinweis.</small></span>
</li>
<li id="cite_note-Claverie2018-77"><span class="mw-cite-backlink"><a href="#cite_ref-Claverie2018_77-0">↑</a></span> <span class="reference-text">Jean-Michel Claverie, Chantal Abergel: <i>„Mimiviridae“: An Expanding Family of Highly Diverse Large dsDNA Viruses Infecting a Wide Phylogenetic Range of Aquatic Eukaryotes.</i> In: <i>Viruses</i>. 18. September 2018, Band 109, S.&nbsp;506, <a href="https://doi.org/10.3390/v10090506" class="extiw external" title="doi:10.3390/v10090506">doi:10.3390/v10090506</a>, <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6163669/">PMC&nbsp;6163669</a> (freier Volltext), <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/30231528?dopt=Abstract">PMID 30231528</a>, Tabelle&nbsp;2.</span>
</li>
<li id="cite_note-Milrot2017-78"><span class="mw-cite-backlink"><a href="#cite_ref-Milrot2017_78-0">↑</a></span> <span class="reference-text">
Elad Milrot, Eyal Shimoni, Tali Dadosh, Katya Rechav, Tamar Unger, James L. Van Etten, Abraham Minsky: <a rel="nofollow" class="external text" href="https://journals.plos.org/plospathogens/article?id=10.1371/journal.ppat.1006562"><i>Structural studies demonstrating a bacteriophage-like replication cycle of the eukaryote-infecting</i> Paramecium bursaria <i>chlorella virus-1</i>.</a> In: <i>PLOS Pathogens.</i> Version 2, 29. April 2017, <a href="https://doi.org/10.1371/journal.ppat.1006562" class="extiw external" title="doi:10.1371/journal.ppat.1006562">doi:10.1371/journal.ppat.1006562</a>.</span>
</li>
<li id="cite_note-79"><span class="mw-cite-backlink"><a href="#cite_ref-79">↑</a></span> <span class="reference-text">X. Zhang, Y. Xiang, D. D. Dunigan, T. Klose, P. R. Chipman, J. L. Van Etten, MG Rossmann: <i>Three dimensional structure and function of the Paramecium bursaria chlorella virus capsid</i>. In: <i>Proceedings of the National Academy of Sciences of the United States of America.</i> 2011, Band 108, S.&nbsp;14837–14842, <a href="https://doi.org/10.1073/pnas.1107847108" class="extiw external" title="doi:10.1073/pnas.1107847108">doi:10.1073/pnas.1107847108</a>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/21873222?dopt=Abstract">PMID 21873222</a>.</span>
</li>
<li id="cite_note-80"><span class="mw-cite-backlink"><a href="#cite_ref-80">↑</a></span> <span class="reference-text">G. Blanc, M. Mozar, I. V. Agarkova, J. R. Gurnon, G. Yanai Balser, J. M. Rowe, Y. Xia, J. J. Riethoven, D. D. Dunigan, J. L. Van Etten: <i>Deep RNA sequencing reveals hidden features and dynamics of early gene transcription in Paramecium bursaria chlorella virus 1</i>. In: <i>PLoS ONE.</i> 2014, Band 9, Artikel 90989, <a href="https://doi.org/10.1371/journal.pone.0090989" class="extiw external" title="doi:10.1371/journal.pone.0090989">doi:10.1371/journal.pone.0090989</a>, <a class="external mw-magiclink-pmid" rel="nofollow" href="https://www.ncbi.nlm.nih.gov/pubmed/24608750?dopt=Abstract">PMID 24608750</a>.</span>
</li>
<li id="cite_note-81"><span class="mw-cite-backlink"><a href="#cite_ref-81">↑</a></span> <span class="reference-text">Siehe auch <a href="Jerry_H.-C._Wang" title="Jerry H.-C. Wang">Jerry H.-C. Wang</a></span>
</li>
</ol></div><!--htdig_noindex--><div><div class="zim-footer">
Dieser Artikel wurde von <a class="external text" title="Zuletzt bearbeitet am 2024-12-30" href="https://de.wikipedia.org/wiki/?title=Chlorovirus&amp;oldid=251722000">Wikipedia</a> herausgegeben. Der Text ist unter <a class="external text" href="https://creativecommons.org/licenses/by-sa/4.0/deed.de">Creative Commons Attribution-Share Alike 4.0</a> verfügbar, sofern nicht anders angegeben. Für die Mediendateien können zusätzliche Bedingungen gelten.
</div>
</div><!--/htdig_noindex--></div>
</div>
</main>
</div>
</div>
</div>
<script src="./_webp_/webpHandler.js"></script>

</body></html>