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Deceptive single-locus taxonomy and phylogeography: Wolbachia-associated divergence in mitochondrial DNA is not reflected in morphology and nuclear markers in a butterfly species

机译:欺骗性的单基因座分类学和系统地理学:蝴蝶物种的形态和核标记未反映线粒体DNA中的Wolbachia相关发散

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摘要

The satyrine butterfly Coenonympha tullia (Nymphalidae: Satyrinae) displays a deep split between two mitochondrial clades, one restricted to northern Alberta, Canada, and the other found throughout Alberta and across North America. We confirm this deep divide and test hypotheses explaining its phylogeographic structure. Neither genitalia morphology nor nuclear gene sequence supports cryptic species as an explanation, instead indicating differences between nuclear and mitochondrial genome histories. Sex-biased dispersal is unlikely to cause such mito-nuclear differences; however, selective sweeps by reproductive parasites could have led to this conflict. About half of the tested samples were infected by Wolbachia bacteria. Using multilocus strain typing for three Wolbachia genes, we show that the divergent mitochondrial clades are associated with two different Wolbachia strains, supporting the hypothesis that the mito-nuclear differences resulted from selection on the mitochondrial genome due to selective sweeps by Wolbachia strains.
机译:苜蓿蝴蝶Coenonympha tullia(Nymphalidae:Satyrinae)在两个线粒体进化枝之间有很深的裂痕,一个局限于加拿大艾伯塔省北部,另一个遍布整个艾伯塔省和整个北美。我们证实了这种深层分歧,并检验了解释其系统地理结构的假说。生殖器形态或核基因序列均未支持隐性物种的解释,而是表明核基因组和线粒体基因组历史之间存在差异。性别偏见的散布不太可能导致这种微核差异。但是,生殖寄生虫的选择性扫描可能导致了这种冲突。大约一半的测试样品被沃尔巴氏菌感染。使用针对三个Wolbachia基因的多基因座菌株分型,我们显示了不同的线粒体进化枝与两种不同的Wolbachia菌株相关联,支持以下假设:由于Wolbachia菌株的选择性清除,线粒体基因组上的选择导致了线粒体核差异。

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