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A microsatellite linkage map for Drosophila montana shows large variation in recombination rates, and a courtship song trait maps to an area of low recombination

机译:蝇果蝇的微卫星连锁图谱显示重组率变化很大,而求爱歌曲特征图谱显示重组率低的区域

摘要

Current advances in genetic analysis are opening up our knowledge of the genetics of species differences, but challenges remain, particularly for out-bred natural populations. We constructed a microsatellite-based linkage map for two out-bred lines of Drosophila montana derived from divergent populations by taking advantage of the Drosophila virilis genome and available cytological maps of both species. Although the placement of markers was quite consistent with cytological predictions, the map indicated large heterogeneity in recombination rates along chromosomes. We also performed a quantitative trait locus (QTL) analysis on a courtship song character (carrier frequency), which differs between populations and is subject to strong sexual selection. Linkage mapping yielded two significant QTLs, which explained 3% and 14% of the variation in carrier frequency, respectively. Interestingly, as in other recent studies of traits which can influence speciation, the strongest QTL mapped to a genomic region partly covered by an inversion polymorphism.
机译:遗传分析的最新进展使我们对物种差异的遗传学有了更多的了解,但是挑战仍然存在,尤其是对于自然交配的种群。我们利用果蝇virilis基因组和这两种物种的可用细胞学图谱,为来自不同种群的两个果蝇蒙太纳杂交系构建了基于微卫星的连锁图谱。尽管标记的位置与细胞学预测非常一致,但该图谱显示沿染色体的重组率存在很大的异质性。我们还对求爱歌曲的性格(载波频率)进行了定量性状基因座(QTL)分析,这在不同人群之间有所不同,并且需要进行强烈的性选择。连锁图谱产生了两个重要的QTL,分别解释了载波频率变化的3%和14%。有趣的是,与其他最近可能影响物种形成的性状研究一样,最强的QTL定位到部分被反向多态性覆盖的基因组区域。

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