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Evolutionary Mechanisms of Varying Chromosome Numbers in the Radiation of Erebia Butterflies

机译:Erebia蝴蝶辐射中染色体数目变化的进化机制。

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The evolution of intrinsic barriers to gene flow is a crucial step in the process of speciation. Chromosomal changes caused by fusion and fission events are one such barrier and are common in several groups of Lepidoptera. However, it remains unclear if and how chromosomal changes have contributed to speciation in this group. I tested for a phylogenetic signal of varying chromosome numbers in Erebia butterflies by combining existing sequence data with karyological information. I also compared different models of trait evolution in order to infer the underlying evolutionary mechanisms. Overall, I found significant phylogenetic signals that are consistent with non-neutral trait evolution only when parts of the mitochondrial genome were included, suggesting cytonuclear discordances. The adaptive evolutionary model tested in this study consistently outperformed the neutral model of trait evolution. Taken together, these results suggest that, unlike other Lepidoptera groups, changes in chromosome numbers may have played a role in the diversification of Erebia butterflies.
机译:基因流的内在障碍的进化是物种形成过程中的关键步骤。由融合和裂变事件引起的染色体变化就是这样的障碍之一,在鳞翅目的几组中很常见。但是,目前尚不清楚染色体的变化是否以及如何导致了这一群体的物种形成。我通过结合现有的序列数据和人体学信息,测试了大红蝶中不同染色体数目的系统发生信号。为了推断出潜在的进化机制,我还比较了特征进化的不同模型。总的来说,我发现只有在包括线粒体基因组的一部分时,才发现与非中性特征进化一致的重​​要系统发育信号,这表明细胞核不一致。在这项研究中测试的自适应进化模型始终优于特质进化的中性模型。综上所述,这些结果表明,与其他鳞翅目动物不同,染色体数目的变化可能在Erebia蝴蝶的多样性中发挥了作用。

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