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Fine-Mapping and Selective Sweep Analysis of QTL for Cold Tolerance in Drosophila melanogaster

机译:果蝇耐寒性的QTL精细映射和选择性扫描分析

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摘要

There is a growing interest in investigating the relationship between genes with signatures of natural selection and genes identified in QTL mapping studies using combined population and quantitative genetics approaches. We dissected an X-linked interval of 6.2 Mb, which contains two QTL underlying variation in chill coma recovery time (CCRT) in Drosophila melanogaster from temperate (European) and tropical (African) regions. This resulted in two relatively small regions of 131 kb and 124 kb. The latter one co-localizes with a very strong selective sweep in the European population. We examined the genes within and near the sweep region individually using gene expression analysis and P-element insertion lines. Of the genes overlapping with the sweep, none appears to be related to CCRT. However, we have identified a new candidate gene of CCRT, , which is located just outside the sweep region and is inducible by cold stress. We discuss these results in light of recent population genetics theories on quantitative traits.
机译:使用组合的种群和定量遗传学方法研究具有自然选择特征的基因与在QTL定位研究中鉴定的基因之间的关系越来越引起人们的兴趣。我们剖析了X连锁间隔6.2 Mb,其中包含来自温带(欧洲)和热带(非洲)地区果蝇的冷昏迷恢复时间(CCRT)的两个QTL潜在变化。这导致了131 kb和124 kb的两个相对较小的区域。后者与欧洲人口中非常强烈的选择性扫荡共同定位。我们使用基因表达分析和P元素插入线分别检查了扫描区域内和附近的基因。在与扫描重叠的基因中,似乎没有一个与CCRT相关。但是,我们已经确定了CCRT的新候选基因,该基因位于扫掠区的外部,并且可以被冷胁迫诱导。我们根据有关数量性状的最新种群遗传学理论讨论这些结果。

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