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One Hundred Mitochondrial Genomes of Cicadas

机译:蝉的一百个线粒体基因组

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Mitochondrial genomes can provide valuable information on the biology and evolutionary histories of their host organisms. Here, we present and characterize the complete coding regions of 107 mitochondrial genomes (mitogenomes) of cicadas (Insecta: Hemiptera: Auchenorrhyncha: Cicadoidea), representing 31 genera, 61 species, and 83 populations. We show that all cicada mitogenomes retain the organization and gene contents thought to be ancestral in insects, with some variability among cicada clades in the length of a region between the genes nad2 and cox1, which encodes 3 tRNAs. Phylogenetic analyses using these mitogenomes recapitulate a recent 5-gene classification of cicadas into families and subfamilies, but also identify a species that falls outside of the established taxonomic framework. While protein-coding genes are under strong purifying selection, tests of relative evolutionary rates reveal significant variation in evolutionary rates across taxa, highlighting the dynamic nature of mitochondrial genome evolution in cicadas. These data will serve as a useful reference for future research into the systematics, ecology, and evolution of the superfamily Cicadoidea.
机译:线粒体基因组可以提供有关其宿主生物的生物学和进化历史的有价值的信息。在这里,我们展示并表征了蝉的107个线粒体基因组(毒细胞)的完整编码区(昆虫:Hemiptera:Auchenorrhyncha:唾液酸),代表31属,61种和83个种群。我们表明,所有蝉毒蛛都保留了组织和基因内容认为是昆虫的祖先,在编码3个TrNA之间的区域之间的区域的长度中的蝉流体中的一些可变性。使用这些诱导物的系统发育分析将最近的蝉分类重新携带蝉分类为家族和亚属,但也识别落在已建立的分类框架之外的物种。虽然蛋白质编码基因受到强烈净化的选择,但相对进化率的测试揭示了分类群中进化率的显着变化,突出了蝉线粒体基因组进化的动态性质。这些数据将成为未来研究Superfamily Cicadoidea的系统性,生态和演变的有用参考。

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