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Natural selection has driven population differentiation in modern humans.

机译:自然选择推动了现代人类的人口分化。

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The considerable range of observed phenotypic variation in human populations may reflect, in part, distinctive processes of natural selection and adaptation to variable environmental conditions. Although recent genome-wide studies have identified candidate regions under selection, it is not yet clear how natural selection has shaped population differentiation. Here, we have analyzed the degree of population differentiation at 2.8 million Phase II HapMap single-nucleotide polymorphisms. We find that negative selection has globally reduced population differentiation at amino acid-altering mutations, particularly in disease-related genes. Conversely, positive selection has ensured the regional adaptation of human populations by increasing population differentiation in gene regions, primarily at nonsynonymous and 5'-UTR variants. Our analyses identify a fraction of loci that have contributed, and probably still contribute, to the morphological and disease-related phenotypic diversity of current human populations.
机译:在人口中观察到的表型变异的范围相当大,这可能部分反映了自然选择和适应可变环境条件的独特过程。尽管最近的全基因组研究已经确定了正在选择的候选区域,但尚不清楚自然选择如何影响种群分化。在这里,我们分析了280万个II期HapMap单核苷酸多态性的人群分化程度。我们发现负选择已在全球范围内减少了改变氨基酸的突变人群的分化,特别是在疾病相关基因中。相反,正选择通过增加主要在非同义和5'-UTR变异的基因区域中的种群分化,确保了人类种群的区域适应性。我们的分析确定了一部分基因位点对当前人群的形态和疾病相关的表型多样性有所贡献,并且可能仍在做出贡献。

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