单系
系统基因组学
生物
克莱德
进化生物学
动物
超级矩阵
系统发育树
分类单元
膜翅目
生态学
遗传学
基因
当前代数
数学
仿射李代数
纯数学
域代数上的
作者
Nan Song,Shu‐Jun Wei,Miaomiao Wang
标识
DOI:10.1080/24701394.2024.2345663
摘要
The order Hymenoptera is one of the most species-rich insect orders, with more than 150,000 described extant species. Many hymenopteran insects have very different mitochondrial genome (mitogenome) organizations compared to the putative ancestral organization of insects. In this study, we sequenced 18 mitogenomes of representatives in the order Hymenoptera to increase taxonomic sampling. A total of 475 species were used in phylogenetic analyses, including 18 new mitogenomes and 457 existing mitogenomes. Using a site-heterogeneous model, Bayesian's inference from amino acid data yielded more resolved relationships among Hymenoptera than maximum-likelihood analysis and coalescent-based species analyses. The monophyly of Symphyta was not supported. The Xyeloidea was the earliest branching clade in the Hymenoptera. The Orussoidea was closely related to Apocrita. Within Apocrita, the Parasitoida was non-monophyletic. The monophyly of most Parasitoida superfamilies received strong support. The Proctotrupomorpha clade was supported in Bayesian's analysis. The Apoidea was monophyletic when excluding
科研通智能强力驱动
Strongly Powered by AbleSci AI