Phylogenetic analysis of Blaberoidea reveals non-monophyly of taxa and supports the creation of multiple new subfamilies

IF 3.9 2区 生物学 Q1 EVOLUTIONARY BIOLOGY
Cladistics Pub Date : 2023-04-17 DOI:10.1111/cla.12535
Yi-Shu Wang, Jia-Wei Zhang, Nathan Lo, Thomas Bourguignon, Lin Guo, Bian-Lun Li, Yan-Li Che, Zong-Qing Wang
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引用次数: 1

Abstract

The superfamily Blaberoidea is a highly species-rich group of cockroaches. High-level blaberoidean phylogenetics are still under debate owing to variable taxon sampling and incongruence between mitochondrial and nuclear evolution, as well as different methods used in various phylogenetic studies. We here present a phylogenetic analysis of Blaberoidea based on a dataset combining the mitochondrial genome with two nuclear markers from representatives of all recognized families within the superfamily. Our results support the monophyly of Blaberiodea, which includes Ectobiidae s.s. (=Ectobiinae), Pseudophyllodromiidae, Nyctiboridae, Blattellidae s.s. (=Blattellinae) and Blaberidae. Ectobiidae s.s. was recovered as sister to the remaining Blaberoidea in all inferences. Pseudophyllodromiidae was paraphyletic with respect to Anaplectoidea + Malaccina. Blattellidae s.s. excluding Anaplectoidea + Malaccina formed a monophyletic group that was sister to Blaberidae. Based on our results, we propose a revised classification for Blaberoidea: Anaplectoidinae subfam.nov. and Episorineuchora gen.nov., and two new combinations at species level within Pseudophyllodromiidae; Rhabdoblattellinae subfam.nov., Calolamprodinae subfam.nov., Acutirhabdoblatta gen.nov., as well as new combinations for three species within Blaberidae. Ancestral state reconstructions based on four morphological characters allow us to infer that the common ancestor of blaberoid cockroaches is likely to be a species with characteristics similar to those found in Ectobiidae, that is, front femur Type B, arolium present, abdomen with a visible gland and male genital hook on the left side.

Abstract Image

blabero总科的系统发育分析揭示了分类群的非单系性,支持了多个新亚科的形成
蟑螂超科是一种种类丰富的蟑螂。由于不同的分类群取样和线粒体与核进化的不一致,以及在各种系统发育研究中使用的不同方法,高水平的blaberoidea系统发育仍然存在争议。我们在此提出了Blaberoidea基于一个数据集结合线粒体基因组和两个核标记的系统发育分析,这些标记来自超家族中所有已知家族的代表。本研究结果支持了blababiodea的单系性,即包括拟叶蛾科(= ectobiae)、拟叶蛾科(=Blattellinae)、夜蛾科(=Blattellinae)和blababidae。在所有的推论中,都发现异卵蜂科是剩余的卵蜂科的姊妹。假叶蛾科对麻痘总科+麻痘总科呈副致病性。blattelldae s.s不包括anplectoidea + Malaccina形成一个单系类群,是blabellidae的姐妹。在此基础上,我们提出了一种新的Blaberoidea分类:anplectoidinae subfamily .nov。和Episorineuchora gen. 11。,在种水平上有两个新组合;Rhabdoblattellinae subfam.nov。,花椰菜亚科;;;;;;;以及blababidae中三个物种的新组合。基于四种形态特征的祖先状态重建,我们可以推断出blaberoid蜚蠊的共同祖先很可能是一种具有类似于Ectobiidae的特征的物种,即前股骨B型,有腋毛,腹部可见腺体,左侧有雄性生殖器钩。
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来源期刊
Cladistics
Cladistics 生物-进化生物学
CiteScore
8.60
自引率
5.60%
发文量
34
期刊介绍: Cladistics publishes high quality research papers on systematics, encouraging debate on all aspects of the field, from philosophy, theory and methodology to empirical studies and applications in biogeography, coevolution, conservation biology, ontogeny, genomics and paleontology. Cladistics is read by scientists working in the research fields of evolution, systematics and integrative biology and enjoys a consistently high position in the ISI® rankings for evolutionary biology.
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