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Conflicting signal in transcriptomic markers leads to a poorly resolved backbone phylogeny of chalcidoid wasps

机译:转录组标记中的冲突信号导致氯化糖皮脂糖皮脂糖的骨髓发育不良

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Chalcidoidea (Hymenoptera) are a megadiverse superfamily of wasps with astounding variation in both morphology and biology. Most species are parasitoids and important natural enemies of insects in terrestrial ecosystems. In this study, we present a transcriptome-based phylogeny of Chalcidoidea; we found that poorly resolved relationships could only be marginally improved by adding more genes (a total of 5591) and taxa (a total of 65), proof-checking for errors of homology and contamination, and decreasing missing data. Concatenation analyses consistently place Mymaridae and Trichogrammatidae sister to remaining Chalcidoidea. However, our coalescent analyses provide a different hypothesis with a grouping of (Mymaridae (((Trichogrammatidae, Eulophidae), (Encyrtidae, Aphelinidae)), remaining Chalcidoidea)). This hypothesis complicates our hypothesis of egg parasitism as being the ancestral state in Chalcidoidea. At the deeper nodes, the results uncovered a wide spectrum of gene discordance in the transcriptomic markers and identified a strong signal of functional bias in genes supporting alternative phylogenies. These deeper nodes of the phylogeny are thus strongly influenced by biased support from different functional gene complexes. Shallower nodes showed similar gene discordance, but without strong functional bias. Understanding and identifying mechanisms that result in gene tree discordance may be beneficial and even essential for elucidating deeper relationships, especially for groups that have undergone extremely rapid radiation.
机译:Chalcidoidea(Hymenoptera)是一种巨大的Superfamily的黄蜂,具有令人震惊的形态和生物学变化。大多数物种是陆地生态系统中胰岛素和昆虫的重要自我敌人。在这项研究中,我们提出了一种基于转录的胆碱系统的基础系统;我们发现,通过添加更多基因(共5591)和分类票(共65个),对同源性和污染误差以及减少缺失数据来说,才能略微改善。倾斜分析一致地将mymaridae和trichogrammatidae姐妹留给剩下的胆碱。然而,我们的结束分析提供了不同的假设(mymaridae(((((((酪虫草),((encyrtidae,aphelinidae)),剩余的胆碱))。这一假设使我们的假设使蛋寄生症的假设使胆陶氏陶器中的祖先州。在更深的节点处,结果发现转录组标记物中的广泛的基因谱和鉴定了在支持替代文献发育的基因中的功能偏压的强信号。因此,这些系统发生的深层节点受到来自不同官能基因复合物的偏置载体的强烈影响。较浅的节点显示出类似的基因不等味,但没有强大的功能偏见。理解和识别导致基因树不等味的机制可能是有益的,对于阐明更深的关系来说,甚至是必不可少的,特别是对于经历过极快速辐射的组。

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