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Demography and natural selection have shaped genetic variation in Drosophila melanogaster: a multi-locus approach.

机译:人口统计学和自然选择已经塑造了果蝇的遗传变异:一种多位点方法。

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摘要

Demography and selection have been recognized for their important roles in shaping patterns of nucleotide variability. To investigate the relative effects of these forces in the genome of Drosophila melanogaster, we used a multi-locus scan (105 fragments) of X-linked DNA sequence variation in a putatively ancestral African and a derived European population. Surprisingly, we found evidence for a recent size expansion in the African population, i.e., a significant excess of singletons at a chromosome-wide level. In the European population, such an excess was not detected. In contrast to the African population, we found evidence for positive natural selection in the European sample: (i) a large number of loci with low levels of variation and (ii) a significant excess of derived variants at the low-variation loci that are fixed in the European sample but rare in the African population. These results are consistent with the hypothesis that the European population has experienced frequent selective sweeps in the recent past during its adaptation to new habitats. Our study shows the advantages of a genomic approach (over a locus-specific analysis) in disentangling demographic and selective forces.
机译:人口统计学和选择因其在核苷酸变异性塑造模式中的重要作用而得到公认。为了研究这些力在果蝇果蝇基因组中的相对作用,我们在一个推测为祖传的非洲人和一个衍生的欧洲人中,使用了X连锁DNA序列变异的多基因座扫描(105个片段)。令人惊讶地,我们发现了非洲人口最近规模扩大的证据,即在整个染色体水平上单身显着过量。在欧洲人口中,没有发现这种过量。与非洲人口相反,我们在欧洲样本中发现了积极的自然选择证据:(i)大量具有低变异水平的基因座,和(ii)在低变异基因座上显着过量的衍生变体在欧洲样本中固定,但在非洲人口中很少见。这些结果与以下假设相一致:欧洲人口在适应新的栖息地期间最近经历了频繁的选择性扫荡。我们的研究表明,基因组方法(通过针对特定位点的分析)的优势在分散人口统计和选择力方面具有优势。

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