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Evidence that the rate of strong selective sweeps increases with population size in the great apes

机译:有证据表明大猿猴的强力选择性扫除率随种群数量的增加而增加

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摘要

Quantifying the number of selective sweeps and their combined effects on genomic diversity in humans and other great apes is notoriously difficult. Here we address the question using a comparative approach to contrast diversity patterns according to the distance from genes in all great ape taxa. The extent of diversity reduction near genes compared with the rest of intergenic sequences is greater in a species with larger effective population size. Also, the maximum distance from genes at which the diversity reduction is observed is larger in species with large effective population size. In Sumatran orangutans, the overall genomic diversity is ∼30% smaller than diversity levels far from genes, whereas this reduction is only 9% in humans. We show by simulation that selection against deleterious mutations in the form of background selection is not expected to cause these differences in diversity among species. Instead, selective sweeps caused by positive selection can reduce diversity level more severely in a large population if there is a higher number of selective sweeps per unit time. We discuss what can cause such a correlation, including the possibility that more frequent sweeps in larger populations are due to a shorter waiting time for the right mutations to arise.
机译:众所周知,很难对选择性扫描的数量及其对人类和其他大猿的基因组多样性的综合影响进行量化。在这里,我们使用比较方法根据所有大猿类群中距基因的距离来对比多样性模式,以解决这个问题。在有效种群规模较大的物种中,与其余基因间序列相比,邻近基因的多样性降低程度更大。同样,在具有较大有效种群规模的物种中,距观察到多样性降低的基因的最大距离较大。在苏门答腊猩猩中,总体基因组多样性比远离基因的多样性水平小约30%,而在人类中,这种减少仅9%。我们通过仿真表明,针对有害突变的背景选择形式的选择不会导致物种间多样性的差异。相反,如果每单位时间有更多选择扫描,则由正选择引起的选择扫描可以在更大的人口中更加严重地降低多样性水平。我们讨论了什么可能导致这种相关,包括更大的人群中更频繁的扫描是由于较短的等待时间导致正确的突变出现的可能性。

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