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Uncovering the Footprint of Positive Selection on the X Chromosome of Drosophila melanogaster

机译:揭示果蝇X染色体正选择的足迹

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摘要

A usual approach to detect the spatial footprint left by recent adaptive events has been to follow up putative candidates emerging from multilocus scans of variation by sequencing additional fragments. We have used a similar experimental and analytical approach to study variation at 15 independently evolving and randomly chosen regions of the X chromosome of Drosophila melanogaster. These incompletely sequenced regions, each extending over ∼40 kb, were subjected to two tests of positive selection that take into account the spatial distribution of nucleotide variation. Our analysis of variation at these genomic regions in a European population of D. melanogaster has allowed us to uncover a candidate region for positive selection and to empirically evaluate the comparative performance of the two tests of selection under a bottleneck scenario. Moreover, the boundaries here estimated for both the rate of adaptive substitution (δ) and the average selection coefficient (s) would support previous estimates obtained by maximum likelihood that suggest rather strong but uncommon positive selection.
机译:检测最近的自适应事件留下的空间足迹的一种常用方法是通过对其他片段进行测序来跟踪从变异的多位点扫描中出现的假定候选对象。我们使用了类似的实验和分析方法来研究果蝇X染色体的15个独立进化和随机选择的区域的变异。对这些不完整测序的区域(每个区域约40 kb)进行了两次阳性选择测试,其中考虑了核苷酸变异的空间分布。我们对欧洲黑腹果蝇种群中这些基因组区域的变异进行的分析,使我们得以发现一个可能进行阳性选择的候选区域,并通过经验评估了在瓶颈情况下两种选择测试的比较效果。此外,此处针对自适应替代率(δ)和平均选择系数估计的边界将支持通过最大可能性获得的先前估计,这表明存在相当强的但不常见的积极选择。

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