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Why do human diversity levels vary at a megabase scale?

机译:为什么人类的多样性水平以兆为基数变化?

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摘要

Levels of diversity vary across the human genome. This variation is caused by two forces: differences in mutation rates and the differential impact of natural selection. Pertinent to the question of the relative importance of these two forces is the observation that both diversity within species and interspecies divergence increase with recombination rates. This suggests that mutation and recombination are either directly coupled or linked through some third factor. Here, we test these possibilities using the recently generated sequence of the chimpanzee genome and new estimates of human diversity. We find that measures of GC and CpG content, simple-repeat structures, as well as the distance from the centromeres and the telomeres predict diversity as well as divergence. After controlling for these factors, large-scale recombination rates measured from pedigrees are still significant predictors of human diversity and human-chimpanzee divergence. Furthermore, the correlation between human diversity and recombination remains significant even after controlling for human-chimpanzee divergence. Two plausible and non-mutually exclusive explanations are, first, that natural selection has shaped the patterns of diversity seen in humans and, second, that recombination rates across the genome have changed since humans and chimpanzees shared a common ancestor, so that current recombination rates are a better predictor of diversity than of divergence. Because there are indications that recombination rates may have changed rapidly during human evolution, we favor the latter explanation.
机译:整个人类基因组的多样性水平各不相同。这种变化是由两个力造成的:突变率的差异和自然选择的差异性。与这两种力量的相对重要性有关的是,观察到物种内的多样性和种间的多样性都随着重组率的增加而增加。这表明突变和重组是直接偶联或通过某些第三因子连接。在这里,我们使用最近生成的黑猩猩基因组序列和人类多样性的新估计来测试这些可能性。我们发现,GC和CpG含量,简单重复结构以及与着丝粒和端粒的距离的量度可预测多样性和差异。在控制了这些因素之后,从血统书中测得的大规模重组率仍然是人类多样性和人类黑猩猩差异的重要预测指标。此外,即使在控制了人类-黑猩猩的差异之后,人类多样性与重组之间的相关性仍然很重要。两种合理且非互斥的解释是,首先,自然选择塑造了人类所见的多样性模式,其次,由于人类和黑猩猩共享共同祖先,因此整个基因组的重组率发生了变化,因此当前的重组率比差异更好地预测了多样性。由于有迹象表明重组率可能在人类进化过程中发生了快速变化,因此我们支持后一种解释。

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