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Widespread genomic divergence during sympatric speciation

机译:同胞物种形成过程中广泛的基因组差异

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摘要

Speciation with gene flow is expected to generate a heterogeneous pattern of genomic differentiation. The few genes under or physically linked to loci experiencing strong disruptive selection can diverge, whereas gene flow will homogenize the remainder of the genome, resulting in isolated “genomic islands of speciation.” We conducted an experimental test of this hypothesis in Rhagoletis pomonella, a model for sympatric ecological speciation. Contrary to expectations, we found widespread divergence throughout the Rhagoletis genome, with the majority of loci displaying host differences, latitudinal clines, associations with adult eclosion time, and within-generation responses to selection in a manipulative overwintering experiment. The latter two results, coupled with linkage disequilibrium analyses, provide experimental evidence that divergence was driven by selection on numerous independent genomic regions rather than by genome-wide genetic drift. “Continents” of multiple differentiated loci, rather than isolated islands of divergence, may characterize even the early stages of speciation. Our results also illustrate how these continents can exhibit variable topography, depending on selection strength, availability of preexisting genetic variation, linkage relationships, and genomic features that reduce recombination. For example, the divergence observed throughout the Rhagoletis genome was clearly accentuated in some regions, such as those harboring chromosomal inversions. These results highlight how the individual genes driving speciation can be embedded within an actively diverging genome.
机译:预期具有基因流的物种形成基因组分化的异质模式。在经历强破坏性选择的基因座下或与基因座物理相关的少数基因可能会发生分歧,而基因流将使基因组的其余部分同质化,从而形成孤立的“物种形成的基因组孤岛”。我们在同胞生态物种模型Rhogoletis pomonella中对该假设进行了实验检验。与预期相反,我们在整个Rhagoletis基因组中发现了广泛的差异,其中大多数基因座显示出宿主差异,纬度谱系,与成虫羽化时间的关联以及代内越冬实验中对选择的反应。后两个结果,再加上连锁不平衡分析,提供了实验证据,表明差异是由在众多独立基因组区域的选择驱动的,而不是由全基因组的遗传漂移驱动的。多个分化位点的“大陆”,而不是孤立的分散岛,甚至可以描述物种形成的早期阶段。我们的结果还说明了这些大陆如何表现出变化的地形,具体取决于选择强度,现有遗传变异的可用性,连锁关系以及减少重组的基因组特征。例如,在某些区域,例如具有染色体倒置的区域,在整个Rhagoletis基因组中观察到的差异明显加剧。这些结果突显了驱动物种形成的各个基因如何被嵌入到一个积极分化的基因组中。

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