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Chromosomal patterns of microsatellite variability contrast sharply in African and non-African populations of Drosophila melanogaster.

机译:非洲和非果蝇果蝇的微卫星变异的染色体模式形成鲜明对比。

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摘要

Levels of neutral variation are influenced by background selection and hitchhiking. The relative contribution of these evolutionary forces to the distribution of neutral variation is still the subject of ongoing debates. Using 133 microsatellites, we determined levels of variability on X chromosomes and autosomes in African and non-African D. melanogaster populations. In the ancestral African populations microsatellite variability was higher on X chromosomes than on autosomes. In non-African populations X-linked polymorphism is significantly more reduced than autosomal variation. In non-African populations we observed a significant positive correlation between X chromosomal polymorphism and recombination rate. These results are consistent with the interpretation that background selection shapes levels of neutral variability in the ancestral populations, while the pattern in derived populations is determined by multiple selective sweeps during the colonization process. Further research, however, is required to investigate the influence of inversion polymorphisms and unequal sex ratios.
机译:中性变化的水平受背景选择和搭便车的影响。这些进化力对中立变化分布的相对贡献仍然是正在进行的辩论的主题。我们使用133个微卫星,确定了非洲和非非洲D. melanogaster种群中X染色体和常染色体的变异水平。在祖先的非洲人群中,X染色体上的微卫星变异性高于常染色体。在非非洲人群中,X连锁多态性比常染色体变异明显降低。在非非洲人群中,我们观察到X染色体多态性与重组率之间存在显着正相关。这些结果与以下解释一致:背景选择会影响祖先种群的中性变异水平,而派生种群的模式则由定殖过程中的多次选择性扫描确定。然而,需要进一步的研究来研究反转多态性和不平等性别比的影响。

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