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拟果蝇性别比例减数分裂驱动的双基因座模型中的选择性清除

Selective sweeps in a 2-locus model for sex-ratio meiotic drive in Drosophila simulans.

作者信息

Derome Nicolas, Baudry Emmanuelle, Ogereau David, Veuille Michel, Montchamp-Moreau Catherine

机构信息

Ecole Pratique des Hautes Etudes, Paris, France.

出版信息

Mol Biol Evol. 2008 Feb;25(2):409-16. doi: 10.1093/molbev/msm269. Epub 2007 Dec 10.

Abstract

A way to identify loci subject to positive selection is to detect the signature of selective sweeps in given chromosomal regions. It is revealed by the departure of DNA polymorphism patterns from the neutral equilibrium predicted by coalescent theory. We surveyed DNA sequence variation in a region formerly identified as causing "sex-ratio" meiotic drive in Drosophila simulans. We found evidence that this system evolved by positive selection at 2 neighboring loci, which thus appear to be required simultaneously for meiotic drive to occur. The 2 regions are approximately 150-kb distant, corresponding to a genetic distance of 0.1 cM. The presumably large transmission advantage of chromosomes carrying meiotic drive alleles at both loci has not erased the individual signature of selection at each locus. This chromosome fragment combines a high level of linkage disequilibrium between the 2 critical regions with a high recombination rate. As a result, 2 characteristic traits of selective sweeps--the reduction of variation and the departure from selective neutrality in haplotype tests--show a bimodal pattern. Linkage disequilibrium level indicates that, in the natural population from Madagascar used in this study, the selective sweep may be as recent as 100 years.

摘要

一种识别受到正选择的基因座的方法是检测给定染色体区域中选择性清除的特征。它通过DNA多态性模式偏离由合并理论预测的中性平衡来揭示。我们调查了一个先前被确定在拟果蝇中导致“性别比例”减数分裂驱动的区域的DNA序列变异。我们发现有证据表明,这个系统是通过在两个相邻基因座上的正选择进化而来的,因此减数分裂驱动似乎需要这两个基因座同时存在。这两个区域相距约150 kb,对应于0.1 cM的遗传距离。携带两个基因座上减数分裂驱动等位基因的染色体可能具有很大的传递优势,但这并没有消除每个基因座上选择的个体特征。这个染色体片段在两个关键区域之间结合了高水平的连锁不平衡和高重组率。结果,选择性清除的两个特征——变异减少和单倍型测试中偏离选择中性——呈现出双峰模式。连锁不平衡水平表明,在本研究中使用的来自马达加斯加的自然种群中,选择性清除可能近在100年前。

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