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Selective Sweeps across Twenty Millions Years of Primate Evolution

机译:选择性地扫荡两千万年的灵长类动物进化

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摘要

The contribution from selective sweeps to variation in genetic diversity has proven notoriously difficult to assess, in part because polymorphism data only allows detection of sweeps in the most recent few hundred thousand years. Here, we show how linked selection in ancestral species can be quantified across evolutionary timescales by analyzing patterns of incomplete lineage sorting (ILS) along the genomes of closely related species. We show that sweeps in the human-chimpanzee and human-orangutan ancestors can be identified as depletions of ILS in regions in excess of 100 kb in length. Sweeps predicted in each ancestral species, as well as recurrent sweeps predicted in both species, often overlap sweeps predicted in humans. This suggests that many genomic regions experience recurrent selective sweeps. By comparing the ILS patterns along the genomes of the closely related human-chimpanzee and human-orangutan ancestors, we are further able to quantify the impact of selective sweeps relative to that of background selection. Compared with the human-orangutan ancestor, the human-chimpanzee ancestor shows a strong excess of regions depleted of ILS as well as a stronger reduction in ILS around genes. We conclude that sweeps play a strong role in reducing diversity along the genome and that sweeps have reduced diversity in the human-chimpanzee ancestor much more than in the human-orangutan ancestor.
机译:选择性扫描对遗传多样性变异的贡献已被证明难以评估,部分原因是多态性数据只能检测最近几十万年的扫描。在这里,我们展示了如何通过分析沿密切相关物种基因组的不完全谱系分类 (ILS) 模式,在进化时间尺度上量化祖先物种的连锁选择。我们表明,人类 - 黑猩猩和人类 - 猩猩祖先的扫描可以被识别为长度超过100 kb的区域中ILS的消耗。在每个祖先物种中预测的扫描,以及在两个物种中预测的反复扫描,通常与在人类中预测的扫描重叠。这表明许多基因组区域经历了反复的选择性扫描。通过比较密切相关的人类-黑猩猩和人类-猩猩祖先基因组中的ILS模式,我们能够进一步量化选择性扫描相对于背景选择的影响。与人类-猩猩祖先相比,人类-黑猩猩祖先表现出ILS耗尽区域的强烈过剩以及基因周围ILS的更强减少。我们得出的结论是,扫描在减少基因组多样性方面起着重要作用,并且扫描减少了人类 - 黑猩猩祖先的多样性,而不是人类 - 猩猩祖先。

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