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Genome-wide analysis of long-term evolutionary domestication in Drosophila melanogaster

机译:全基因组分析果蝇的长期进化驯化。

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摘要

Experimental evolutionary genomics now allows biologists to test fundamental theories concerning the genetic basis of adaptation. We have conducted one of the longest laboratory evolution experiments with any sexually-reproducing metazoan, Drosophila melanogaster. We used next-generation resequencing data from this experiment to examine genome-wide patterns of genetic variation over an evolutionary time-scale that approaches 1,000 generations. We also compared measures of variation within and differentiation between our populations to simulations based on a variety of evolutionary scenarios. Our analysis yielded no clear evidence of hard selective sweeps, whereby natural selection acts to increase the frequency of a newly-arising mutation in a population until it becomes fixed. We do find evidence for selection acting on standing genetic variation, as independent replicate populations exhibit similar population-genetic dynamics, without obvious fixation of candidate alleles under selection. A hidden-Markov model test for selection also found widespread evidence for selection. We found more genetic variation genome-wide, and less differentiation between replicate populations genome-wide, than arose in any of our simulated evolutionary scenarios.
机译:现在,实验进化基因组学使生物学家能够测试有关适应性遗传基础的基本理论。我们对任何有性繁殖的后生动物果蝇(Drosophila melanogaster)进行了最长的实验室进化实验之一。我们使用了来自该实验的下一代重测序数据,研究了在接近1000代的进化时间内整个基因组范围内的遗传变异模式。我们还比较了人口内部变异和差异的度量,并根据各种进化情景对模拟进行了比较。我们的分析没有明显的证据表明有困难的选择性扫荡,即自然选择会增加种群中新出现的突变的频率,直到它变得固定。我们确实找到了针对常设遗传变异进行选择的证据,因为独立的重复种群显示出相似的种群遗传动态,而没有明显固定待选的候选等位基因。一项用于选择的隐马尔可夫模型检验也发现了广泛的选择证据。我们发现,与我们模拟的任何进化情景相比,全基因组范围内的遗传变异更多,全基因组重复种群之间的差异较小。

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