Mitochondrial phylogenomics and mitogenome organization in the parasitoid wasp family Braconidae (Hymenoptera: Ichneumonoidea).

IF 1.5 Q2 EDUCATION & EDUCATIONAL RESEARCH
Jovana M Jasso-Martínez, Donald L J Quicke, Sergey A Belokobylskij, Bernardo F Santos, José L Fernández-Triana, Robert R Kula, Alejandro Zaldívar-Riverón
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引用次数: 0

Abstract

Background: Mitochondrial (mt) nucleotide sequence data has been by far the most common tool employed to investigate evolutionary relationships. While often considered to be more useful for shallow evolutionary scales, mt genomes have been increasingly shown also to contain valuable phylogenetic information about deep relationships. Further, mt genome organization provides another important source of phylogenetic information and gene reorganizations which are known to be relatively frequent within the insect order Hymenoptera. Here we used a dense taxon sampling comprising 148 mt genomes (132 newly generated) collectively representing members of most of the currently recognised subfamilies of the parasitoid wasp family Braconidae, which is one of the largest radiations of hymenopterans. We employed this data to investigate the evolutionary relationships within the family and to assess the phylogenetic informativeness of previously known and newly discovered mt gene rearrangements.

Results: Most subfamilial relationships and their composition obtained were similar to those recovered in a previous phylogenomic study, such as the restoration of Trachypetinae and the recognition of Apozyginae and Proteropinae as valid braconid subfamilies. We confirmed and detected phylogenetic signal in previously known as well as novel mt gene rearrangements, including mt rearrangements within the cyclostome subfamilies Doryctinae and Rogadinae.

Conclusions: Our results showed that both the mt genome DNA sequence data and gene organization contain valuable phylogenetic signal to elucidate the evolution within Braconidae at different taxonomic levels. This study serves as a basis for further investigation of mt gene rearrangements at different taxonomic scales within the family.

寄生蜂腕蜂科(膜翅目:Ichneumonoidea)的线粒体系统发生组学和有丝分裂基因组的组织。
背景:线粒体(mt)核苷酸序列数据是迄今为止研究进化关系最常用的工具。虽然线粒体基因组通常被认为对浅层进化尺度更有用,但越来越多的研究表明,线粒体基因组也包含有关深层关系的有价值的系统发育信息。此外,mt 基因组组织还提供了另一个重要的系统发育信息来源,已知昆虫膜翅目中的基因重组相对频繁。在这里,我们使用了由 148 个 mt 基因组(132 个新产生的基因组)组成的密集分类群取样,这些基因组共同代表了目前公认的寄生蜂科腕蜂亚科的大多数成员,而腕蜂亚科是膜翅目昆虫中最大的辐射科之一。我们利用这些数据研究了该科内部的进化关系,并评估了以前已知和新发现的 mt 基因重排的系统发生信息量:结果:所获得的大多数亚科关系及其组成与之前的系统发生组学研究中发现的相似,如恢复了腕足动物亚科(Trachypetinae),并确认了腕足动物亚科(Apozyginae)和腕足动物亚科(Proteropinae)为有效的腕足动物亚科。我们证实并检测了以前已知的和新的 mt 基因重排的系统发生信号,包括环口亚科 Doryctinae 和 Rogadinae 中的 mt 重排:我们的研究结果表明,mt基因组DNA序列数据和基因组织均含有宝贵的系统发生学信号,可用于阐明腕足动物在不同分类水平上的进化。这项研究为进一步研究该科内不同分类尺度的mt基因重排奠定了基础。
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来源期刊
EDUCATIONAL FORUM
EDUCATIONAL FORUM EDUCATION & EDUCATIONAL RESEARCH-
CiteScore
2.10
自引率
7.70%
发文量
29
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