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Natural Selection Affects Multiple Aspects of Genetic Variation at Putatively Neutral Sites across the Human Genome

机译:自然选择影响人类基因组中性中性位点遗传变异的多个方面

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A major question in evolutionary biology is how natural selection has shaped patterns of genetic variation across the human genome. Previous work has documented a reduction in genetic diversity in regions of the genome with low recombination rates. However, it is unclear whether other summaries of genetic variation, like allele frequencies, are also correlated with recombination rate and whether these correlations can be explained solely by negative selection against deleterious mutations or whether positive selection acting on favorable alleles is also required. Here we attempt to address these questions by analyzing three different genome-wide resequencing datasets from European individuals. We document several significant correlations between different genomic features. In particular, we find that average minor allele frequency and diversity are reduced in regions of low recombination and that human diversity, human-chimp divergence, and average minor allele frequency are reduced near genes. Population genetic simulations show that either positive natural selection acting on favorable mutations or negative natural selection acting against deleterious mutations can explain these correlations. However, models with strong positive selection on nonsynonymous mutations and little negative selection predict a stronger negative correlation between neutral diversity and nonsynonymous divergence than observed in the actual data, supporting the importance of negative, rather than positive, selection throughout the genome. Further, we show that the widespread presence of weakly deleterious alleles, rather than a small number of strongly positively selected mutations, is responsible for the correlation between neutral genetic diversity and recombination rate. This work suggests that natural selection has affected multiple aspects of linked neutral variation throughout the human genome and that positive selection is not required to explain these observations.
机译:进化生物学中的一个主要问题是自然选择如何塑造人类基因组中遗传变异的模式。先前的工作已证明重组率低的基因组区域的遗传多样性减少。但是,尚不清楚是否其他遗传变异摘要(如等位基因频率)也与重组率相关,以及是否可以仅通过对有害突变的负选择来解释这些相关,还是还需要对有利的等位基因进行正选择。在这里,我们试图通过分析来自欧洲个体的三个不同的全基因组重测序数据集来解决这些问题。我们记录了不同基因组特征之间的几个重要关联。特别地,我们发现在重组低的区域中平均次要等位基因频率和多样性降低,并且在基因附近人类多样性,人黑猩猩发散和平均次要等位基因频率降低。群体遗传模拟表明,对有利突变起作用的正自然选择或对有害突变起作用的负自然选择都可以解释这些相关性。但是,对非同义突变具有强正选择且几乎没有负选择的模型预测,中性多样性和非同义分歧之间的负相关性比实际数据中观察到的强,这支持了在整个基因组中进行负选择而非正选择的重要性。此外,我们表明弱有害的等位基因的广泛存在,而不是少量的强阳性选择突变,是中性遗传多样性与重组率之间相关性的原因。这项工作表明自然选择影响了整个人类基因组中连锁中性变异的多个方面,并且不需要正向选择来解释这些观察结果。

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