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The Role of Natural Selection in Genetic Differentiation of Worldwide Populations of Drosophila ananassae

机译:自然选择在全球果蝇种群遗传分化中的作用

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摘要

The main evolutionary forces leading to genetic differentiation between populations are generally considered to be natural selection, random genetic drift, and limited migration. However, little empirical evidence exists to help explain the extent, mechanism, and relative role of these forces. In this study, we make use of the differential migration behavior of genes located in regions of low and high recombination to infer the role and demographic distribution of natural selection in Drosophila ananassae. Sequence data were obtained from 13 populations, representing almost the entire range of cosmopolitan D. ananassae. The pattern of variation at a 5.1-kb fragment of the furrowed gene, located in a region of very low recombination, appears strikingly different from that of 10 noncoding DNA fragments (introns) in regions of normal to high recombination. Most interestingly, two main haplotypes are present at furrowed, one being fixed in northern populations and the other being fixed or in high frequency in more southern populations. A cline in the frequency of one of these haplotypes occurs in parallel latitudinal transects. Taken together, significant clinal variation and a test against alternative models of natural selection provide evidence of two independent selective sweeps restricted to specific regions of the species range.
机译:导致种群之间遗传分化的主要进化力通常被认为是自然选择,随机遗传漂移和有限的迁徙。但是,几乎没有经验证据可以帮助解释这些力量的程度,机制和相对作用。在这项研究中,我们利用位于低和高重组区域的基因的差异迁移行为来推断果蝇果蝇自然选择的作用和人口统计分布。从13个种群中获得了序列数据,这些数据几乎代表了世界性D. ananassae的整个范围。处于非常低重组区域的犁沟基因的5.1kb片段的变异模式与正常重组至高度重组区域的10个非编码DNA片段(内含子)的变异模式明显不同。最有趣的是,犁沟中存在两种主要的单倍型,一种固定在北部种群中,另一种固定或以较高频率出现在较南部的种群中。这些单倍型之一的频率中的一条直线出现在平行的纬线样线中。综上所述,显着的倾斜变化和针对自然选择的替代模型的测试提供了两次独立的选择性扫描的证据,这些扫描仅限于物种范围的特定区域。

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