首页> 外文OA文献 >INTROGRESSION IN THE DROSOPHILA SUBOBSCURA — D. MADEIRENSIS SISTER SPECIES: EVIDENCE OF GENE FLOW IN NUCLEAR GENES DESPITE MITOCHONDRIAL DIFFERENTIATION
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INTROGRESSION IN THE DROSOPHILA SUBOBSCURA — D. MADEIRENSIS SISTER SPECIES: EVIDENCE OF GENE FLOW IN NUCLEAR GENES DESPITE MITOCHONDRIAL DIFFERENTIATION

机译:Drosophila subobscura - D.futirensis姐妹种类中的迟发:核基因的基因流动证据尽管线粒体分化

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摘要

Species hybridization, and thus the potential for gene flow, was once viewed as reproductive mistake. However, recent analysis based on large datasets and newly developed models suggest that gene exchange is not as rare as originally suspected. To investigate the history and speciation of the closely related species Drosophila subobscura, D. madeirensis, and D. guanche, we obtained polymorphism and divergence data for 26 regions throughout the genome, including the Y chromosome and mitochondrial DNA. We found that the D. subobscura X/autosome ratio of silent nucleotide diversity is significantly smaller than the 0.75 expected under neutrality. This pattern, if held genomewide, may reflect a faster accumulation of beneficial mutations on the X chromosome than on autosomes. We also detected evidence of gene flow in autosomal regions, while sex chromosomes remain distinct. This is consistent with the large X effect on hybrid male sterility seen in this system and the presence of two X chromosome inversions fixed between species. Overall, our data conform to chromosomal speciation models in which rearrangements are proposed to serve as gene flow barriers. Contrary to other observations in Drosophila, the mitochondrial genome appears resilient to gene flow in the presence of nuclear exchange.
机译:物种杂交,因此基因流动的潜力曾被视为生殖错误。然而,最近的基于大型数据集和新开发的模型的分析表明基因交换并不像最初怀疑那样罕见。为了调查密切相关的物种果蝇的历史和形态,D. maxirensis和D.冠甲,我们在整个基因组中获得了26个区域的多态性和分歧数据,包括Y染色体和线粒体DNA。我们发现沉默核苷酸多样性的D. subobscura x / utoosome比率明显小于中立性下预期的0.75。如果保持基因面,这种模式可以反映X染色体上的有益突变的更快积累而不是纯染色体。我们还发现了常染色体区域中基因流动的证据,而性染色体仍然是不同的。这与在该系统中看到的杂种雄性不育的大X效应以及两个X染色体反转在物种之间存在的存在。总体而言,我们的数据符合染色体形状模型,其中提出重排成为基因流动障碍。与果蝇中的其他观察相反,线粒体基因组出现在核交换存在下的基因流动。

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