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The Effect of Neutral Recombination Variation on Genome Scans for Selection

机译:中性重组变异对基因组扫描的影响

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摘要

Recently, there has been an increasing interest in identifying the role that regions of low recombination or inversion play in adaptation of species to local environments. Many examples of groups of adapted genes located within inversions are arising in the literature, in part inspired by theory that predicts the evolution of these so-called “supergenes.” We still, however, have a poor understanding of how genomic heterogeneity, such as varying rates of recombination, may confound signals of selection. Here, I evaluate the effect of neutral inversions and recombination variation on genome scans for selection, including tests for selective sweeps, differentiation outlier tests, and association tests. There is considerable variation among methods in their performance, with some methods being unaffected and some showing elevated false positive signals within a neutral inversion or region of low recombination. In some cases the false positive signal can be dampened or removed, if it is possible to use a quasi-independent set of SNPs to parameterize the model before performing the test. These results will be helpful to those seeking to understand the importance of regions of low recombination in adaptation.
机译:最近,人们越来越关注确定低重组或倒位区域在物种适应当地环境中的作用。文献中出现了许多位于倒位内的适应基因的例子,部分原因是受到预测这些所谓“超基因”进化的理论的启发。但是,我们仍然对基因组异质性(例如,不同的重组率)可能如何混淆选择信号的认识不多。在这里,我评估了中性倒置和重组变异对基因组扫描的影响,包括选择扫描,分化离群值测试和关联测试。方法之间的性能差异很大,有些方法不受影响,有些方法在中性倒置或低重组范围内显示出较高的假阳性信号。在某些情况下,如果可以在执行测试之前使用准独立的SNP组参数化模型,则可以消除或消除误报信号。这些结果将有助于那些寻求了解低重组区域在适应中的重要性的人。

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