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Mitochondrial phylogenomics of the Hymenoptera

机译:Hymenoptera的线粒体系统

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摘要

The insect order Hymenoptera presents marvelous morphological and ecological diversity. Higher-level hymenopteran relationships remain controversial, even after recent phylogenomic analyses, as their taxon sampling was limited. To shed light on the origin and diversification of Hymenoptera, in particular the poorly studied Parasitica, we undertook phylogenetic analyses of 40 newly and 43 previously sequenced mitochondrial genomes representing all major clades of Hymenoptera. Various Bayesian inferences using different data partitions and phylogenetic methods recovered similar phylogenetic trees with strong statistical support for almost all nodes. Novel findings of the mitogenomic phylogeny mainly affected the three infraorders Ichneumonomorpha, Proctotrupomorpha and Evaniomorpha, the latter of which was split into three clades. Basal relationships of Parasitica recovered Stephanoidea + (Gasteruptiidae + Aulacidae) as the sister group to Ichneumonomorpha + (Trigonalyoidea + Megalyroidea). This entire clade is sister to Proctotrupomorpha, and Ceraphronoidea + Evaniidae is sister to Aculeata (stinging wasps). Our divergence time analysis indicates that major hymenopteran lineages originated in the Mesozoic. The radiation of early apocritans may have been triggered by the Triassic-Jurassic mass extinction; all extant families were present by the Cretaceous.
机译:昆虫秩序Hymenoptera呈现出奇妙的形态和生态多样性。即使在近期的系统托管分析中,较高级别的Hymenopteran关系仍然存在争议,因为他们的分类种类是有限的。为了阐明Hymenoptera的起源和多样化,特别是研究寄生虫差,我们进行了40次新生和43例,其中43例代表Hymenoptera的所有主要曲线。使用不同的数据分区和系统发育方法的各种贝叶斯推论,对几乎所有节点的强大统计支持恢复了相似的系统发育树。新型方法的含有毒素学系统的方法主要影响了三个动力学Ichneumonomorpha,Proctotrupomorpha和Evaniomorpha,后者被分成了三个枝条。 Parasitica的基础关系回收斯蒂芬科+(Gasterumpiidae + Aulacidae)作为Ichneumonomorpha +的姐妹组(Trigonalyoidea + megalyea)。整个思工是Proctotrupomorpha的妹妹,Ceraphonoidea + Evaniidae是Aculeata的姐妹(刺痛的黄蜂)。我们的分歧时间分析表明主要的Hymenopteran谱系起源于中生代。早期的容纳人的辐射可能被三叠层 - 侏罗纪灭绝引发;所有现存家庭都是白垩纪存在的。

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