Analysis of RNA-Seq, DNA Target Enrichment, and Sanger Nucleotide Sequence Data Resolves Deep Splits in the Phylogeny of Cuckoo Wasps (Hymenoptera: Chrysididae)

IF 3.2 1区 农林科学 Q1 ENTOMOLOGY Insect Systematics and Diversity Pub Date : 2021-01-01 DOI:10.1093/isd/ixaa018
Thomas Pauli, K. Meusemann, Sandra Kukowka, Manuela Sann, A. Donath, C. Mayer, J. Oeyen, Yolanda Ballesteros, Alexander Berg, E. V. Berghe, Hermes E Escalona, A. Guglielmino, M. Niehuis, M. Olmi, L. Podsiadlowski, C. Polidori, Jeroen de Rond, P. Rosa, T. Schmitt, F. Strumia, Mareike Wurdack, Shanlin Liu, Xin Zhou, B. Misof, R. Peters, O. Niehuis
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引用次数: 8

Abstract

Abstract The wasp family Chrysididae (cuckoo wasps, gold wasps) comprises exclusively parasitoid and kleptoparasitic species, many of which feature a stunning iridescent coloration and phenotypic adaptations to their parasitic life style. Previous attempts to infer phylogenetic relationships among the family's major lineages (subfamilies, tribes, genera) based on Sanger sequence data were insufficient to statistically resolve the monophyly and the phylogenetic position of the subfamily Amiseginae and the phylogenetic relationships among the tribes Allocoeliini, Chrysidini, Elampini, and Parnopini (Chrysidinae). Here, we present a phylogeny inferred from nucleotide sequence data of 492 nuclear single-copy genes (230,915 aligned amino acid sites) from 94 species of Chrysidoidea (representing Bethylidae, Chrysididae, Dryinidae, Plumariidae) and 45 outgroup species by combining RNA-seq and DNA target enrichment data. We find support for Amiseginae being more closely related to Cleptinae than to Chrysidinae. Furthermore, we find strong support for Allocoeliini being the sister lineage of all remaining Chrysidinae, whereas Elampini represent the sister lineage of Chrysidini and Parnopini. Our study corroborates results from a recent phylogenomic investigation, which revealed Chrysidoidea as likely paraphyletic. Graphical Abstract
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杜鹃胡蜂(膜翅目:胡蜂科)的RNA-Seq、DNA靶富集和Sanger核苷酸序列分析揭示了杜鹃胡蜂系统发育的深层分裂
摘要Chrysididae黄蜂科(杜鹃黄蜂、金黄蜂)仅包括寄生蜂和盗窃寄生物种,其中许多物种具有令人惊叹的彩虹色和对其寄生生活方式的表型适应。先前基于Sanger序列数据推断该家族主要谱系(亚科、部落、属)之间的系统发育关系的尝试不足以从统计上解决Amiseginae亚科的单系和系统发育位置,以及Allocoeliini、Chrysidini、Elampini和Parnopini(Chrysidinae)部落之间的系统发展关系。在这里,我们通过结合RNA-seq和DNA靶点富集数据,从94种Chrysididea(代表Bethylidae、Chrysidae、Dryinidae、Plumaridae)和45个外群物种的492个核单拷贝基因(230915个对齐的氨基酸位点)的核苷酸序列数据推断了一个系统发育。我们发现Amiseginae与Cleptinae的亲缘关系比Chrysidinae更为密切。此外,我们发现Allocoeliini是所有剩余Chrysidinae的姐妹谱系,而Elampini代表Chrysidini和Parnopini的姐妹谱系。我们的研究证实了最近一项系统发育学研究的结果,该研究揭示了Chrysididea可能是副系的。图形摘要
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来源期刊
CiteScore
5.30
自引率
8.80%
发文量
34
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