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High Resolution Genomic Scans Reveal Genetic Architecture Controlling Alcohol Preference in Bidirectionally Selected Rat Model
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نویسنده
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lo c.-l. ,lossie a.c. ,liang t. ,liu y. ,xuei x. ,lumeng l. ,zhou f.c. ,muir w.m.
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منبع
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plos genetics - 2016 - دوره : 12 - شماره : 8
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چکیده
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Investigations on the influence of nature vs. nurture on alcoholism (alcohol use disorder) in human have yet to provide a clear view on potential genomic etiologies. to address this issue,we sequenced a replicated animal model system bidirectionally-selected for alcohol preference (ap). this model is uniquely suited to map genetic effects with high reproducibility,and resolution. the origin of the rat lines (an 8-way cross) resulted in small haplotype blocks (hb) with a corresponding high level of resolution. we sequenced dnas from 40 samples (10 per line of each replicate) to determine allele frequencies and hb. we achieved ~46x coverage per line and replicate. excessive differentiation in the genomic architecture between lines,across replicates,termed signatures of selection (ss),were classified according to gene and region. we identified ss in 930 genes associated with ap. the majority (50%) of the ss were confined to single gene regions,the greatest numbers of which were in promoters (284) and intronic regions (169) with the least in exon's (4),suggesting that differences in ap were primarily due to alterations in regulatory regions. we confirmed previously identified genes and found many new genes associated with ap. of those newly identified genes,several demonstrated neuronal function involved in synaptic memory and reward behavior,e.g. ion channels (kcnf1,kcnn3,scn5a),excitatory receptors (grin2a,gria3,grip1),neurotransmitters (pomc),and synapses (snap29). this study not only reveals the polygenic architecture of ap,but also emphasizes the importance of regulatory elements,consistent with other complex traits. © 2016 public library of science. all rights reserved.
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آدرس
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indiana alcohol research center,indiana university school of medicine,indianapolis,in,united states,department of anatomy & cell biology,indiana university school of medicine,indianapolis,in, United States, indiana alcohol research center,indiana university school of medicine,indianapolis,in,united states,department of animal sciences,purdue university,west lafayette,in,united states,genetics,epigenetics,and developmental neuroscience branch,division of neuroscience and behavior,national institute on drug abuse,nih,bethesda,md, United States, indiana alcohol research center,indiana university school of medicine,indianapolis,in,united states,department of medicine,indiana university school of medicine,indianapolis,in, United States, indiana alcohol research center,indiana university school of medicine,indianapolis,in,united states,department of medical genetics,indiana university school of medicine,indianapolis,in, United States, indiana alcohol research center,indiana university school of medicine,indianapolis,in,united states,department of biochemistry,indiana university school of medicine,indianapolis,in, United States, indiana alcohol research center,indiana university school of medicine,indianapolis,in,united states,department of medicine,indiana university school of medicine,indianapolis,in, United States, indiana alcohol research center,indiana university school of medicine,indianapolis,in,united states,department of anatomy & cell biology,indiana university school of medicine,indianapolis,in,united states,stark neuroscience research institute,indiana university school of medicine,indianapolis,in, United States, indiana alcohol research center,indiana university school of medicine,indianapolis,in,united states,department of animal sciences,purdue university,west lafayette,in,united states,department of medicine,indiana university school of medicine,indianapolis,in, United States
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Authors
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