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<span id="openzim-page-title" class="mw-page-title-main"><span class="mw-page-title-main">Modifications (genetics)</span></span>
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<div id="mw-content-text" class="mw-body-content mw-content-ltr" lang="en" dir="ltr"><div class="mw-content-ltr mw-parser-output" lang="en" dir="ltr"><p>The term <i><b>modifications</b></i> in genetics refers to both naturally occurring and engineered changes in DNA.
Incidental, or natural <a href="Mutation" title="Mutation">mutations</a> occur through errors during replication and repair, either spontaneously or due to environmental stressors. Intentional modifications are done in a laboratory for various purposes, developing hardier seeds and plants, and increasingly to treat human disease. The use of gene editing technology remains controversial.
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<div class="mw-heading mw-heading2"><h2 id="Genetic_modifications_(incidental_and_intentional)">Genetic modifications (incidental and intentional)</h2></div>
<p><b>Modifications</b> are changes in an individual's DNA due to incidental <a href="Mutation" title="Mutation">mutation</a> or intentional <a href="Genetic_engineering" title="Genetic engineering">genetic modification</a> using various biotechnologies.<sup id="cite_ref-:103_1-0" class="reference"><a href="#cite_note-:103-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup> Although confusion exists between the terms "modification" and "mutation" as they are often used interchangeably, modification differentiates itself from mutation because it acts as an umbrella term, encompassing both definitions of mutation and genetic engineering.<sup id="cite_ref-:103_1-1" class="reference"><a href="#cite_note-:103-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup> Both of these subcategorizations result in a change affect an organism's obervable characteristics, also known as their <a href="Phenotype" title="Phenotype">phenotype</a>, caused due to alterations in an organism's genotype, or their specific alleles, resulting in altered gene expression.<sup id="cite_ref-2" class="reference"><a href="#cite_note-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup> Although heritability plays a large role in an individual's expression, like in cases of <a href="Epigenetics" title="Epigenetics">epigenetic</a> modifications, not all instances of modification are heritable. No matter the origins of such variation at the genetic level, it clearly impacts the creation and interaction of proteins, changing cell function, phenotype, and organism function.<sup id="cite_ref-3" class="reference"><a href="#cite_note-3"><span class="cite-bracket">[</span>3<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Types_of_modification">Types of modification</h3></div>
<p>Genetic modifications can occur naturally, through aforementioned mutations in an organism's genome, or through biotechnological methods of selecting a gene of interest to manipulate in order to make something new or improve upon what already exists.<sup id="cite_ref-:103_1-2" class="reference"><a href="#cite_note-:103-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup> This distinction between changes that occur naturally and those that are intentional is key to understanding the difference between mutation and genetic engineering.<sup id="cite_ref-:103_1-3" class="reference"><a href="#cite_note-:103-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading4"><h4 id="Mutation_(incidental)">Mutation (incidental)</h4></div>
<p>Mutation can be more accurately defined as any non-combinatorial change in phenotype that is able to be consistently inherited from parent to offspring over generations.<sup id="cite_ref-:103_1-4" class="reference"><a href="#cite_note-:103-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup> Mutations can be attributed to many factors and come in numerous different forms, however they can mostly be attributed to mistakes that occur during <a href="DNA_replication" title="DNA replication">DNA replication</a> or exposure to external factors.<sup id="cite_ref-:122_4-0" class="reference"><a href="#cite_note-:122-4"><span class="cite-bracket">[</span>4<span class="cite-bracket">]</span></a></sup> As cellular processes are highly efficient, they are not perfect causing disparities between organisms of the same species.<sup id="cite_ref-:122_4-1" class="reference"><a href="#cite_note-:122-4"><span class="cite-bracket">[</span>4<span class="cite-bracket">]</span></a></sup> These disparities can cause many different <a href="Mutation" title="Mutation">phenotypic effects</a> of all intensities, ranging from no observable impact at all to possible inviability.<sup id="cite_ref-:122_4-2" class="reference"><a href="#cite_note-:122-4"><span class="cite-bracket">[</span>4<span class="cite-bracket">]</span></a></sup> Due to environmental conditions such as climate, diet, oxygen levels, light cycles, and mutagens or chemicals which are strongly related to disease susceptibility, genes expression can vary.<sup id="cite_ref-5" class="reference"><a href="#cite_note-5"><span class="cite-bracket">[</span>5<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-6" class="reference"><a href="#cite_note-6"><span class="cite-bracket">[</span>6<span class="cite-bracket">]</span></a></sup> The timing and duration of exposure to such elements is a critical factor as well as it can significantly impact the phenotypic response of an organism, generally increasing severity with time.<sup id="cite_ref-7" class="reference"><a href="#cite_note-7"><span class="cite-bracket">[</span>7<span class="cite-bracket">]</span></a></sup>
</p><p><i>Methods:</i>
</p><p>There are several methods, or forms, of <a href="Mutation" title="Mutation">mutation</a> that exist including spontaneous mutation, errors during replication and repair, as well as mutation due to environmental effects.<sup id="cite_ref-:132_8-0" class="reference"><a href="#cite_note-:132-8"><span class="cite-bracket">[</span>8<span class="cite-bracket">]</span></a></sup> These origins of mutations can cause many different <a href="Mutation" title="Mutation">types of mutations</a> which influence gene expression on both large and small scales.<sup id="cite_ref-:132_8-1" class="reference"><a href="#cite_note-:132-8"><span class="cite-bracket">[</span>8<span class="cite-bracket">]</span></a></sup>
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<div class="mw-heading mw-heading4"><h4 id="Genetic_engineering_(intentional)">Genetic engineering (intentional)</h4></div>
<p>Genetic engineering is a type of intentional genetic modification, which uses biotechnology to alter an organism's genome. According to <a href="World_Health_Organization" title="World Health Organization">World Health Organization</a> (WHO), genetically modified organisms are defined as "Organisms (i.e. plants, animals or microorganisms) in which the genetic material (DNA) has been altered in a way that does not occur naturally by mating and/or natural recombination”.<sup id="cite_ref-9" class="reference"><a href="#cite_note-9"><span class="cite-bracket">[</span>9<span class="cite-bracket">]</span></a></sup> This type of modification can involve insertions or deletions of DNA bases into the existing genetic code.<sup id="cite_ref-:0_10-0" class="reference"><a href="#cite_note-:0-10"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup> In biotechnological methodology, a series of four steps are used in order to create a genetically modified organism (GMO).<sup id="cite_ref-:142_11-0" class="reference"><a href="#cite_note-:142-11"><span class="cite-bracket">[</span>11<span class="cite-bracket">]</span></a></sup>
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<ol><li><ol><li>Identify
<ol><li>Researchers identify a trait of interest usually based on a desire to solve a problem.<sup id="cite_ref-:142_11-1" class="reference"><a href="#cite_note-:142-11"><span class="cite-bracket">[</span>11<span class="cite-bracket">]</span></a></sup></li></ol></li>
<li>Isolate
<ol><li>Researchers the sequence of the specific trait by comparing genomes of organisms within the same species, with and without the trait.<sup id="cite_ref-:142_11-2" class="reference"><a href="#cite_note-:142-11"><span class="cite-bracket">[</span>11<span class="cite-bracket">]</span></a></sup></li></ol></li>
<li>Insert
<ol><li>Next, they utilize the sequence(s) and various enzymes to insert the trait's genes into a <a href="Plasmid" title="Plasmid">plasmid vector</a>, which can then be inserted into bacteria to propagate the preferable gene.<sup id="cite_ref-:142_11-3" class="reference"><a href="#cite_note-:142-11"><span class="cite-bracket">[</span>11<span class="cite-bracket">]</span></a></sup></li></ol></li>
<li>Grow
<ol><li>A sign of the creation of a successful GMO is growth and replication with the newly edited genome with no detriments to the organism due to the new modification.<sup id="cite_ref-:142_11-4" class="reference"><a href="#cite_note-:142-11"><span class="cite-bracket">[</span>11<span class="cite-bracket">]</span></a></sup></li></ol></li></ol></li></ol>
<p><i>Methods:</i>
</p>
<p><a href="CRISPR" title="CRISPR">CRISPR</a> methods are a popularly used type of the aforementioned process of genome editing.<sup id="cite_ref-:3_12-0" class="reference"><a href="#cite_note-:3-12"><span class="cite-bracket">[</span>12<span class="cite-bracket">]</span></a></sup> Standing for 'Clustered Regularly Interspaced Short Palindromic Repeats', CRISPR gene editing allows scientists to manually alter gene expression, correcting errors or creating new variations.<sup id="cite_ref-:3_12-1" class="reference"><a href="#cite_note-:3-12"><span class="cite-bracket">[</span>12<span class="cite-bracket">]</span></a></sup> Since 2012, scientists have worked to develop this technology, which has the opportunity to both cure genetic diseases and genetically modify traits to be most desirable, purposefully altering DNA with a high degree of precision.<sup id="cite_ref-:25_13-0" class="reference"><a href="#cite_note-:25-13"><span class="cite-bracket">[</span>13<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Examples">Examples</h3></div>
<div class="mw-heading mw-heading4"><h4 id="Mutation_(incidental)_2">Mutation (incidental)</h4></div>
<p>The <a href="Dandelion" class="mw-redirect" title="Dandelion">dandelion</a>: Most dandelions have long stems, but an increase in potential threats in their environment have caused average dandelion stem length to decrease within certain species, allowing them to better avoid said threats.<sup id="cite_ref-14" class="reference"><a href="#cite_note-14"><span class="cite-bracket">[</span>14<span class="cite-bracket">]</span></a></sup> This adaptation was possible due to a mutation occurring in a shorter-stemmed individual being <a href="Natural_selection" title="Natural selection">selected</a> by environmental pressures.<sup id="cite_ref-:152_15-0" class="reference"><a href="#cite_note-:152-15"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup> Because the shorter-stemmed dandelions had higher <a href="Fitness_landscape" title="Fitness landscape">fitness</a> than long-stemmed dandelions and were able to survive more often, the genetic frequency of the population was altered, genetically modified through the original occurrence of a mutation.<sup id="cite_ref-:152_15-1" class="reference"><a href="#cite_note-:152-15"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup>
</p><p><a href="Sickle_cell_disease" title="Sickle cell disease">Sickle cell disease</a>: In a healthy individual, the <a href="Hemoglobin_subunit_beta" title="Hemoglobin subunit beta">HBB</a> gene is responsible for encoding hemoglobin which carries oxygen throughout the body.<sup id="cite_ref-:32_16-0" class="reference"><a href="#cite_note-:32-16"><span class="cite-bracket">[</span>16<span class="cite-bracket">]</span></a></sup> However, when a person has this disease due to inheriting two mutated copies of the HBB gene due to a <a href="Base_pair" title="Base pair">base pair</a> <a href="Point_mutation" title="Point mutation">point mutation</a>, their red blood cells are shaped differently.<sup id="cite_ref-:32_16-1" class="reference"><a href="#cite_note-:32-16"><span class="cite-bracket">[</span>16<span class="cite-bracket">]</span></a></sup> This altered shape results in blockages of blood flow with serious health implications.<sup id="cite_ref-:32_16-2" class="reference"><a href="#cite_note-:32-16"><span class="cite-bracket">[</span>16<span class="cite-bracket">]</span></a></sup> On the other hand, those who inherit only one mutated copy of this gene have higher protection against <a href="Malaria" title="Malaria">malaria</a>.<sup id="cite_ref-17" class="reference"><a href="#cite_note-17"><span class="cite-bracket">[</span>17<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading4"><h4 id="Genetic_engineering_(intentional)_2">Genetic engineering (intentional)</h4></div>
<p><a href="Alzheimer's_disease" title="Alzheimer's disease">Alzheimer's disease</a>: In a synthetic example in a laboratory, scientists isolated the <a href="Amyloid-beta_precursor_protein" title="Amyloid-beta precursor protein">amyloid precursor protein</a> (APP) gene, known for using Alzheimer's in humans, and transmitted it into the nerve cells of worms.<sup id="cite_ref-:0_10-1" class="reference"><a href="#cite_note-:0-10"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup> In doing this, scientists aimed to study the progression of Alzheimer's disease in this simple organism by tagging the APP protein with <a href="Green_fluorescent_protein" title="Green fluorescent protein">green fluorescent protein</a> which allowed them to better visualize the gene as the worm aged.<sup id="cite_ref-:0_10-2" class="reference"><a href="#cite_note-:0-10"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup> Using what they learned from experimentation with the simple worm and the APP gene, scientists increased their understanding of this gene's role in causing Alzheimer's disease in humans.<sup id="cite_ref-:0_10-3" class="reference"><a href="#cite_note-:0-10"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup>
</p><p><a href="Insulin_(medication)" title="Insulin (medication)">Insulin</a>: The first use of <a href="Genetically_modified_bacteria" title="Genetically modified bacteria">genetically modified bacteria</a> was for the medical insulin that diabetics need to medically control their blood sugar.<sup id="cite_ref-18" class="reference"><a href="#cite_note-18"><span class="cite-bracket">[</span>18<span class="cite-bracket">]</span></a></sup> Through the following steps, scientists are able to genetically engineer a medical product that millions of people rely on worldwide:<sup id="cite_ref-:0_10-4" class="reference"><a href="#cite_note-:0-10"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup>
</p>
<ol><li>A small piece of DNA is extracted from a circular form of bacterial or yeast DNA called a plasmid. A scientist will extract this DNA through using specific restriction enzymes.</li>
<li>Then, a scientist will insert the human gene for insulin into the gap left by the extracted DNA. This plasmid is now considered a genetically modified entity.</li>
<li>The genetically modified entity is reintroduced into a new bacterial or yeast cell.</li>
<li>This cell will then undergo mitosis and divide rapidly, producing insulin suitable for human needs.</li>
<li>Scientists grow the genetically modified bacteria or yeast in large fermentation vessels, which contain all of their necessary nutrients, and allow large amounts of insulin to be cultivated.</li>
<li>When fermentation is complete, the mixture is filtered to produce the final the insulin.</li>
<li>The insulin is then purified and packaged into bottles and insulin pens for distribution to patients with diabetes.</li></ol>
<div class="mw-heading mw-heading3"><h3 id="Ethics_of_genetic_engineering">Ethics of genetic engineering</h3></div>
<p>Fast-paced developments in the CRISPR-Cas9 gene editing technology has increased both the concerns and relevance of this ethical controversy as it has become more popularly used.<sup id="cite_ref-:162_19-0" class="reference"><a href="#cite_note-:162-19"><span class="cite-bracket">[</span>19<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-:82_20-0" class="reference"><a href="#cite_note-:82-20"><span class="cite-bracket">[</span>20<span class="cite-bracket">]</span></a></sup> The scientific community recommends continued evaluation of risks and benefits of utilizing genetically modified organisms in everyday life.<sup id="cite_ref-21" class="reference"><a href="#cite_note-21"><span class="cite-bracket">[</span>21<span class="cite-bracket">]</span></a></sup> Genetic modifications are studied by researchers under controlled conditions after they are inserted into an organism, allowing for improved scientific understanding of the effects of certain gene modifications and certain organism responses.
</p>
<div class="mw-heading mw-heading4"><h4 id="Humans">Humans</h4></div>
<p>In April 2015, gene editing technology was used on human embryos and debate about the ethics of such actions persisted since.<sup id="cite_ref-22" class="reference"><a href="#cite_note-22"><span class="cite-bracket">[</span>22<span class="cite-bracket">]</span></a></sup> Nonetheless, scientists and policymakers are in agreement that public deliberations should decide the legality of germ line genome editing.<sup id="cite_ref-:1_23-0" class="reference"><a href="#cite_note-:1-23"><span class="cite-bracket">[</span>23<span class="cite-bracket">]</span></a></sup> Modifying a person's non-heritable DNA with the goal of improving one's medical condition is generally accepted and has a plethora of ethical protocols monitoring such procedures.<sup id="cite_ref-:162_19-1" class="reference"><a href="#cite_note-:162-19"><span class="cite-bracket">[</span>19<span class="cite-bracket">]</span></a></sup> This includes modifications like organ donation, bone marrow transplants, and types of gene therapies, all of which consider cultural and religious values.<sup id="cite_ref-:162_19-2" class="reference"><a href="#cite_note-:162-19"><span class="cite-bracket">[</span>19<span class="cite-bracket">]</span></a></sup> On the other hand, there is contention surrounding heritable gene modification exemplified by the fact that 19 countries have outlawed this type of genetic modification.<sup id="cite_ref-:162_19-3" class="reference"><a href="#cite_note-:162-19"><span class="cite-bracket">[</span>19<span class="cite-bracket">]</span></a></sup> For those who believe the vitility of a human embryo is equivalent to an adult, genome editing in early development occurring at or immediately following fertilization raises moral concerns.<sup id="cite_ref-:25_13-1" class="reference"><a href="#cite_note-:25-13"><span class="cite-bracket">[</span>13<span class="cite-bracket">]</span></a></sup> In order to mitigate these concerns, studies using human embryos have used embryos from left over <a href="In_vitro_fertilisation" title="In vitro fertilisation">IVF</a> treatments.<sup id="cite_ref-:25_13-2" class="reference"><a href="#cite_note-:25-13"><span class="cite-bracket">[</span>13<span class="cite-bracket">]</span></a></sup> Scientists have also suggested creating fertilized zygotes from donated sperm and eggs strictly for research purposes.<sup id="cite_ref-:25_13-3" class="reference"><a href="#cite_note-:25-13"><span class="cite-bracket">[</span>13<span class="cite-bracket">]</span></a></sup> However, this raises an additional ethical concern within the scientific community about the concept of a zygote being created only to be used for experimentation.<sup id="cite_ref-:25_13-4" class="reference"><a href="#cite_note-:25-13"><span class="cite-bracket">[</span>13<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading4"><h4 id="Foods">Foods</h4></div>
<p>Debate also surrounds genetically engineered food in terms of the controversial health and environmental effects that it may have in various time scales.<sup id="cite_ref-:54_24-0" class="reference"><a href="#cite_note-:54-24"><span class="cite-bracket">[</span>24<span class="cite-bracket">]</span></a></sup> Regulations have been implemented for approval of genetically modified foods to reduce some uncertainty that remains in this field.<sup id="cite_ref-:62_25-0" class="reference"><a href="#cite_note-:62-25"><span class="cite-bracket">[</span>25<span class="cite-bracket">]</span></a></sup> The reasons in favor of development of genetically modified foods include to meet the demands of the exponentially growing human population, to substitute for the decrease in farmable land, and to address the decrease in genetic diversity which limits possible improvement of species.<sup id="cite_ref-:54_24-1" class="reference"><a href="#cite_note-:54-24"><span class="cite-bracket">[</span>24<span class="cite-bracket">]</span></a></sup> Additional benefits include improved herbicide tolerance, increased pest and bacterial/fungal/viral resistance, higher stress tolerance, and increased nutrient content within the organism.<sup id="cite_ref-:73_26-0" class="reference"><a href="#cite_note-:73-26"><span class="cite-bracket">[</span>26<span class="cite-bracket">]</span></a></sup> The biotechnology of genetic engineering provides the opportunity to achieve global food security by addressing these problems and positively impacting the food production economy.<sup id="cite_ref-:54_24-2" class="reference"><a href="#cite_note-:54-24"><span class="cite-bracket">[</span>24<span class="cite-bracket">]</span></a></sup> Potential health risks are also being researched and there are requirements for the safety of genetically modified foods to be clarified before they are consumed by the public. Environmental consequences are also considered due to disruptions within the food web when these organisms are added to a previously balanced ecosystem.<sup id="cite_ref-:54_24-3" class="reference"><a href="#cite_note-:54-24"><span class="cite-bracket">[</span>24<span class="cite-bracket">]</span></a></sup> As genetic modification is so fast, the environment may not be able to adapt and integrate the new organism into the ecosystem or it could have unwanted effects on its surroundings.<sup id="cite_ref-:73_26-1" class="reference"><a href="#cite_note-:73-26"><span class="cite-bracket">[</span>26<span class="cite-bracket">]</span></a></sup> Other impacts on the environment include unnatural gene flow, modification of soil and water chemistry, and reduction of species diversity.<sup id="cite_ref-:62_25-1" class="reference"><a href="#cite_note-:62-25"><span class="cite-bracket">[</span>25<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Future_implications_of_modification">Future implications of modification</h3></div>
<p>Ethical considerations regarding gene editing are largely controversial within the scientific community due to its open ended implications for the rest of society.<sup id="cite_ref-:162_19-4" class="reference"><a href="#cite_note-:162-19"><span class="cite-bracket">[</span>19<span class="cite-bracket">]</span></a></sup> Although no consensus has been reached, there are plans in place to utilize the available resources to continue education, scientific research as well as research on ethical, legal, and social issues associated with genetic modification.<sup id="cite_ref-:82_20-1" class="reference"><a href="#cite_note-:82-20"><span class="cite-bracket">[</span>20<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading2"><h2 id="References">References</h2></div>
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</style><cite id="CITEREFTikhodeyev2015" class="citation journal cs1">Tikhodeyev, Oleg (March 2015). <a rel="nofollow" class="external text" href="https://www.researchgate.net/publication/276114479">"Crisis of the term "mutation" and its resolution in the context of the differential concept of variability"</a>. <i>Biology Bulletin Reviews</i>. <b>5</b> (2): <span class="nowrap">119–</span>129. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1134%2FS2079086415020103">10.1134/S2079086415020103</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:18758862">18758862</a>.</cite></span>
</li>
<li id="cite_note-2"><span class="mw-cite-backlink"><b><a href="#cite_ref-2">^</a></b></span> <span class="reference-text"><cite id="CITEREFAllison2012" class="citation book cs1">Allison, Lizabeth A. (2012). <i>Fundamental Molecular Biology</i>. United States of America: John Wiley & Sons, Inc. pp. <span class="nowrap">354–</span>355. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9781118059814</bdi>.</cite></span>
</li>
<li id="cite_note-3"><span class="mw-cite-backlink"><b><a href="#cite_ref-3">^</a></b></span> <span class="reference-text"><cite id="CITEREFDalzielRogersSchulte2009" class="citation journal cs1">Dalziel, Anne C.; Rogers, Sean M.; Schulte, Patricia M. (2009). "Linking genotypes to phenotypes and fitness: how mechanistic biology can inform molecular ecology". <i>Molecular Ecology</i>. <b>18</b> (24): <span class="nowrap">4997–</span>5017. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1111%2Fj.1365-294X.2009.04427.x">10.1111/j.1365-294X.2009.04427.x</a>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/1365-294X">1365-294X</a>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/19912534">19912534</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:23160826">23160826</a>.</cite></span>
</li>
<li id="cite_note-:122-4"><span class="mw-cite-backlink">^ <a href="#cite_ref-:122_4-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:122_4-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:122_4-2"><sup><i><b>c</b></i></sup></a></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://evolution.berkeley.edu/evolution-101/mechanisms-the-processes-of-evolution/the-causes-of-mutations/">"The causes of mutations - Understanding Evolution"</a>. 2021-03-15<span class="reference-accessdate">. Retrieved <span class="nowrap">2022-02-17</span></span>.</cite></span>
</li>
<li id="cite_note-5"><span class="mw-cite-backlink"><b><a href="#cite_ref-5">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="http://www.nature.com/scitable/topicpage/environment-controls-gene-expression-sex-determination-and-982">"Environmental Control of Gene Expression | Learn Science at Scitable"</a>. <i>www.nature.com</i><span class="reference-accessdate">. Retrieved <span class="nowrap">2022-02-17</span></span>.</cite></span>
</li>
<li id="cite_note-6"><span class="mw-cite-backlink"><b><a href="#cite_ref-6">^</a></b></span> <span class="reference-text"><cite id="CITEREFSingerRyffHealth2001" class="citation book cs1">Singer, Burton H.; Ryff, Carol D.; Health, National Research Council (US) Committee on Future Directions for Behavioral and Social Sciences Research at the National Institutes of (2001). <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/books/NBK43787/"><i>Environmentally Induced Gene Expression</i></a>. National Academies Press (US).</cite></span>
</li>
<li id="cite_note-7"><span class="mw-cite-backlink"><b><a href="#cite_ref-7">^</a></b></span> <span class="reference-text"><cite id="CITEREFOldenFreudenbergDowdShields2011" class="citation journal cs1">Olden, Kenneth; Freudenberg, Nicholas; Dowd, Jennifer Beam; Shields, Alexandra E. (May 2011). <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3877678">"Discovering how environmental exposures alter genes and could lead to new treatments for chronic illnesses"</a>. <i>Health Affairs</i>. <b>30</b> (5): <span class="nowrap">833–</span>841. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1377%2Fhlthaff.2011.0078">10.1377/hlthaff.2011.0078</a>. <a href="PMC_(identifier)" class="mw-redirect" title="PMC (identifier)">PMC</a> <span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3877678">3877678</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/21555469">21555469</a>.</cite></span>
</li>
<li id="cite_note-:132-8"><span class="mw-cite-backlink">^ <a href="#cite_ref-:132_8-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:132_8-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="http://www.nature.com/scitable/topicpage/genetic-mutation-441">"Genetic Mutation | Learn Science at Scitable"</a>. <i>www.nature.com</i><span class="reference-accessdate">. Retrieved <span class="nowrap">2022-02-26</span></span>.</cite></span>
</li>
<li id="cite_note-9"><span class="mw-cite-backlink"><b><a href="#cite_ref-9">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.who.int/news-room/questions-and-answers/item/food-genetically-modified">"Food, genetically modified"</a>. World Health Organization. 1 May 2014. <q>What are genetically modified (GM) organisms and GM foods?</q></cite></span>
</li>
<li id="cite_note-:0-10"><span class="mw-cite-backlink">^ <a href="#cite_ref-:0_10-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:0_10-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:0_10-2"><sup><i><b>c</b></i></sup></a> <a href="#cite_ref-:0_10-3"><sup><i><b>d</b></i></sup></a> <a href="#cite_ref-:0_10-4"><sup><i><b>e</b></i></sup></a></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.yourgenome.org/theme/what-is-genetic-engineering/">"What is genetic engineering?"</a>. <i>yourgenome.org</i><span class="reference-accessdate">. Retrieved <span class="nowrap">2025-03-25</span></span>.</cite></span>
</li>
<li id="cite_note-:142-11"><span class="mw-cite-backlink">^ <a href="#cite_ref-:142_11-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:142_11-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:142_11-2"><sup><i><b>c</b></i></sup></a> <a href="#cite_ref-:142_11-3"><sup><i><b>d</b></i></sup></a> <a href="#cite_ref-:142_11-4"><sup><i><b>e</b></i></sup></a></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="http://sitn.hms.harvard.edu/flash/2015/how-to-make-a-gmo/">"How to Make a GMO"</a>. <i>Science in the News</i>. 2015-08-09<span class="reference-accessdate">. Retrieved <span class="nowrap">2019-11-14</span></span>.</cite></span>
</li>
<li id="cite_note-:3-12"><span class="mw-cite-backlink">^ <a href="#cite_ref-:3_12-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:3_12-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFKnottDoudna2018" class="citation journal cs1">Knott, Gavin J.; Doudna, Jennifer A. (2018-08-31). <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6455913">"CRISPR-Cas guides the future of genetic engineering"</a>. <i>Science</i>. <b>361</b> (6405): <span class="nowrap">866–</span>869. <a href="Bibcode_(identifier)" class="mw-redirect" title="Bibcode (identifier)">Bibcode</a>:<a rel="nofollow" class="external text" href="https://ui.adsabs.harvard.edu/abs/2018Sci...361..866K">2018Sci...361..866K</a>. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1126%2Fscience.aat5011">10.1126/science.aat5011</a>. <a href="PMC_(identifier)" class="mw-redirect" title="PMC (identifier)">PMC</a> <span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6455913">6455913</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/30166482">30166482</a>.</cite></span>
</li>
<li id="cite_note-:25-13"><span class="mw-cite-backlink">^ <a href="#cite_ref-:25_13-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:25_13-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:25_13-2"><sup><i><b>c</b></i></sup></a> <a href="#cite_ref-:25_13-3"><sup><i><b>d</b></i></sup></a> <a href="#cite_ref-:25_13-4"><sup><i><b>e</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFMunsieGyngell2018" class="citation journal cs1">Munsie, Megan; Gyngell, Christopher (2018-10-01). <span class="id-lock-subscription" title="Paid subscription required"><a rel="nofollow" class="external text" href="https://www.sciencedirect.com/science/article/pii/S0959437X18300212">"Ethical issues in genetic modification and why application matters"</a></span>. <i>Current Opinion in Genetics & Development</i>. Cell reprogramming, regeneration and repair. <b>52</b>: <span class="nowrap">7–</span>12. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1016%2Fj.gde.2018.05.002">10.1016/j.gde.2018.05.002</a>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/0959-437X">0959-437X</a>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/29800628">29800628</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:44075935">44075935</a>.</cite></span>
</li>
<li id="cite_note-14"><span class="mw-cite-backlink"><b><a href="#cite_ref-14">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://crops.extension.iastate.edu/encyclopedia/adaptation-weeds-dandelion">"Adaptation in Weeds - Dandelion | Integrated Crop Management"</a>. <i>crops.extension.iastate.edu</i><span class="reference-accessdate">. Retrieved <span class="nowrap">2022-02-17</span></span>.</cite></span>
</li>
<li id="cite_note-:152-15"><span class="mw-cite-backlink">^ <a href="#cite_ref-:152_15-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:152_15-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFEntine" class="citation web cs1">Entine, Jon. <a rel="nofollow" class="external text" href="https://commonreader.wustl.edu/c/gmos-yes/">"GMOs, Yes!"</a>. <i>Common Reader</i><span class="reference-accessdate">. Retrieved <span class="nowrap">2019-10-24</span></span>.</cite></span>
</li>
<li id="cite_note-:32-16"><span class="mw-cite-backlink">^ <a href="#cite_ref-:32_16-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:32_16-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:32_16-2"><sup><i><b>c</b></i></sup></a></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.genome.gov/Genetic-Disorders/Sickle-Cell-Disease">"About Sickle Cell Disease"</a>. <i>Genome.gov</i><span class="reference-accessdate">. Retrieved <span class="nowrap">2022-02-21</span></span>.</cite></span>
</li>
<li id="cite_note-17"><span class="mw-cite-backlink"><b><a href="#cite_ref-17">^</a></b></span> <span class="reference-text"><cite id="CITEREFLuzzatto2012" class="citation journal cs1">Luzzatto, Lucio (2012). <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3499995">"Sickle Cell Anaemia and Malaria"</a>. <i>Mediterranean Journal of Hematology and Infectious Diseases</i>. <b>4</b> (1): e2012065. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.4084%2FMJHID.2012.065">10.4084/MJHID.2012.065</a>. <a href="PMC_(identifier)" class="mw-redirect" title="PMC (identifier)">PMC</a> <span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3499995">3499995</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/23170194">23170194</a>.</cite></span>
</li>
<li id="cite_note-18"><span class="mw-cite-backlink"><b><a href="#cite_ref-18">^</a></b></span> <span class="reference-text"><cite id="CITEREFJohnson1983" class="citation journal cs1">Johnson, Irving S. (1983-02-11). "Human Insulin from Recombinant DNA Technology". <i>Science</i>. <b>219</b> (4585): <span class="nowrap">632–</span>637. <a href="Bibcode_(identifier)" class="mw-redirect" title="Bibcode (identifier)">Bibcode</a>:<a rel="nofollow" class="external text" href="https://ui.adsabs.harvard.edu/abs/1983Sci...219..632J">1983Sci...219..632J</a>. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1126%2Fscience.6337396">10.1126/science.6337396</a>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/6337396">6337396</a>.</cite></span>
</li>
<li id="cite_note-:162-19"><span class="mw-cite-backlink">^ <a href="#cite_ref-:162_19-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:162_19-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:162_19-2"><sup><i><b>c</b></i></sup></a> <a href="#cite_ref-:162_19-3"><sup><i><b>d</b></i></sup></a> <a href="#cite_ref-:162_19-4"><sup><i><b>e</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFColler2019" class="citation journal cs1">Coller, Barry S. (2019-01-27). <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11299715">"Ethics of Human Genome Editing"</a>. <i>Annual Review of Medicine</i>. <b>70</b> (1): <span class="nowrap">289–</span>305. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.1146%2Fannurev-med-112717-094629">10.1146/annurev-med-112717-094629</a></span>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/0066-4219">0066-4219</a>. <a href="PMC_(identifier)" class="mw-redirect" title="PMC (identifier)">PMC</a> <span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11299715">11299715</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/30691366">30691366</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:59339196">59339196</a>.</cite></span>
</li>
<li id="cite_note-:82-20"><span class="mw-cite-backlink">^ <a href="#cite_ref-:82_20-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:82_20-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFHowardvan_ElForzanoRadojkovic2018" class="citation journal cs1">Howard, Heidi C.; van El, Carla G.; Forzano, Francesca; Radojkovic, Dragica; Rial-Sebbag, Emmanuelle; de Wert, Guido; Borry, Pascal; Cornel, Martina C.; Public and Professional Policy Committee of the European Society of Human Genetics (January 2018). <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5839051">"One small edit for humans, one giant edit for humankind? Points and questions to consider for a responsible way forward for gene editing in humans"</a>. <i>European Journal of Human Genetics</i>. <b>26</b> (1): <span class="nowrap">1–</span>11. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1038%2Fs41431-017-0024-z">10.1038/s41431-017-0024-z</a>. <a href="PMC_(identifier)" class="mw-redirect" title="PMC (identifier)">PMC</a> <span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5839051">5839051</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/29192152">29192152</a>.</cite></span>
</li>
<li id="cite_note-21"><span class="mw-cite-backlink"><b><a href="#cite_ref-21">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.un.org/development/desa/dpad/wp-content/uploads/sites/45/publication/FTQ_May_2019.pdf">"Playing with genes: The good, the bad and the ugly"</a> <span class="cs1-format">(PDF)</span>. <i>UN.org</i>. Frontier Technology Quarterly: Economic Analysis and Policy Division, Department of Economic and Social Affairs. May 2019.</cite></span>
</li>
<li id="cite_note-22"><span class="mw-cite-backlink"><b><a href="#cite_ref-22">^</a></b></span> <span class="reference-text"><cite id="CITEREFLiangXuZhangDing2015" class="citation journal cs1">Liang, Puping; Xu, Yanwen; Zhang, Xiya; Ding, Chenhui; Huang, Rui; Zhang, Zhen; Lv, Jie; Xie, Xiaowei; Chen, Yuxi; Li, Yujing; Sun, Ying (2015-05-01). <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4417674">"CRISPR/Cas9-mediated gene editing in human tripronuclear zygotes"</a>. <i>Protein & Cell</i>. <b>6</b> (5): <span class="nowrap">363–</span>372. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1007%2Fs13238-015-0153-5">10.1007/s13238-015-0153-5</a>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/1674-8018">1674-8018</a>. <a href="PMC_(identifier)" class="mw-redirect" title="PMC (identifier)">PMC</a> <span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4417674">4417674</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/25894090">25894090</a>.</cite></span>
</li>
<li id="cite_note-:1-23"><span class="mw-cite-backlink"><b><a href="#cite_ref-:1_23-0">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.genome.gov/about-genomics/policy-issues/Genome-Editing/ethical-concerns">"What are the Ethical Concerns of Genome Editing?"</a>. <i>Genome.gov</i><span class="reference-accessdate">. Retrieved <span class="nowrap">2019-11-14</span></span>.</cite></span>
</li>
<li id="cite_note-:54-24"><span class="mw-cite-backlink">^ <a href="#cite_ref-:54_24-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:54_24-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:54_24-2"><sup><i><b>c</b></i></sup></a> <a href="#cite_ref-:54_24-3"><sup><i><b>d</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFZhangWohlhueterZhang2016" class="citation journal cs1">Zhang, Chen; Wohlhueter, Robert; Zhang, Han (2016-09-01). <a rel="nofollow" class="external text" href="https://doi.org/10.1016%2Fj.fshw.2016.04.002">"Genetically modified foods: A critical review of their promise and problems"</a>. <i>Food Science and Human Wellness</i>. <b>5</b> (3): <span class="nowrap">116–</span>123. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.1016%2Fj.fshw.2016.04.002">10.1016/j.fshw.2016.04.002</a></span>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/2213-4530">2213-4530</a>.</cite></span>
</li>
<li id="cite_note-:62-25"><span class="mw-cite-backlink">^ <a href="#cite_ref-:62_25-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:62_25-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFTsatsakisNawazTutelyanGolokhvast2017" class="citation journal cs1">Tsatsakis, Aristidis M.; Nawaz, Muhammad Amjad; Tutelyan, Victor A.; Golokhvast, Kirill S.; Kalantzi, Olga-Ioanna; Chung, Duck Hwa; Kang, Sung Jo; Coleman, Michael D.; Tyshko, Nadia; Yang, Seung Hwan; Chung, Gyuhwa (2017-09-01). <span class="id-lock-subscription" title="Paid subscription required"><a rel="nofollow" class="external text" href="https://www.sciencedirect.com/science/article/pii/S0278691517303411">"Impact on environment, ecosystem, diversity and health from culturing and using GMOs as feed and food"</a></span>. <i>Food and Chemical Toxicology</i>. <b>107</b> (Pt A): <span class="nowrap">108–</span>121. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1016%2Fj.fct.2017.06.033">10.1016/j.fct.2017.06.033</a>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/0278-6915">0278-6915</a>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/28645870">28645870</a>.</cite></span>
</li>
<li id="cite_note-:73-26"><span class="mw-cite-backlink">^ <a href="#cite_ref-:73_26-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:73_26-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFWeale2010" class="citation journal cs1">Weale, Albert (2010-11-30). <a rel="nofollow" class="external text" href="https://doi.org/10.1016%2Fj.nbt.2010.08.013">"Ethical arguments relevant to the use of GM crops"</a>. <i>New Biotechnology</i>. TRANSGENIC PLANTS FOR FOOD SECURITY IN THE CONTEXT OF DEVELOPMENT. <b>27</b> (5): <span class="nowrap">582–</span>587. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.1016%2Fj.nbt.2010.08.013">10.1016/j.nbt.2010.08.013</a></span>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/1871-6784">1871-6784</a>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/20850572">20850572</a>.</cite></span>
</li>
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