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A recombination suppressor contributes to ecological speciation in OSTRINIA moths

机译:重组抑制剂有助于OSTRINIA飞蛾的生态形成

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摘要

Despite unparalleled access to species' genomes in our post-genomic age, we often lack adequate biological explanations for a major hallmark of the speciation process—genetic divergence. In the presence of gene flow, chromosomal rearrangements such as inversions are thought to promote divergence and facilitate speciation by suppressing recombination. Using a combination of genetic crosses, phenotyping of a trait underlying ecological isolation, and population genetic analysis of wild populations, we set out to determine whether evidence supports a role for recombination suppressors during speciation between the Z and E strains of European corn borer moth (Ostrinia nubilalis). Our results are consistent with the presence of an inversion that has contributed to accumulation of ecologically adaptive alleles and genetic differentiation across roughly 20% of the Ostrinia sex chromosome (~4 Mb). Patterns in Ostrinia suggest that chromosomal divergence may involve two separate phases—one driving its transient origin through local adaptation and one determining its stable persistence through differential introgression. As the evolutionary rate of rearrangements in lepidopteran genomes appears to be one of the fastest among eukaryotes, structural mutations may have had a disproportionate role during adaptive divergence and speciation in Ostrinia and in other moths and butterflies.
机译:尽管在我们进入后基因组时代以来,人类无法获得物种的基因组,但是对于物种形成过程的一个主要标志-遗传差异,我们常常缺乏足够的生物学解释。在存在基因流的情况下,染色体重排如倒置被认为可通过抑制重组促进分化并促进物种形成。通过结合遗传杂交,生态隔离性状的表型分析和野生种群的种群遗传分析,我们着手确定证据是否支持欧洲玉米bore蛾的Z和E菌株形成过程中重组抑制剂的作用(牛)。我们的结果与反演的存在是一致的,该反演有助于在大约20%的Ostrinia性染色体(〜4 Mb)中积累生态适应性等位基因和遗传分化。 Ostrinia中的模式表明,染色体发散可能涉及两个独立的阶段:一个通过局部适应来驱动其瞬时起源,一个通过差异渗入确定其稳定的持久性。由于鳞翅目动物基因组中重排进化的速度似乎是真核生物中最快的之一,因此结构突变在Ostrinia和其他蛾类和蝴蝶的适应性分化和物种形成过程中可能起着不成比例的作用。

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