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13 May 2024 Mitogenome architecture supports the non-monophyly of the cosmopolitan parasitoid wasp subfamily Doryctinae (Hymenoptera: Braconidae) recovered by nuclear and mitochondrial phylogenomics
Rubén Castañeda-Osorio, Sergey A. Belokobylskij, Jovana M. Jasso-Martínez, Ernesto Samacá-Sáenz, Robert R. Kula, Alejandro Zaldívar-Riverón
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Abstract

Mitochondrial DNA gene organisation is an important source of phylogenetic information for various metazoan taxa at different evolutionary timescales, though this has not been broadly tested for all insect groups nor within a phylogenetic context. The cosmopolitan subfamily Doryctinae is a highly diverse group of braconid wasps mainly represented by ectoparasitoids of xylophagous beetle larvae. Previous molecular studies based on Sanger and genome-wide (ultraconserved elements, UCE; and mitochondrial genomes) sequence data have recovered a non-monophyletic Doryctinae, though the relationships involved have always been weakly supported. We characterised doryctine mitogenomes and conducted separate phylogenetic analyses based on mitogenome and UCE sequence data of ~100 representative doryctine genera to assess the monophyly and higher-level classification of the subfamily. We identified rearrangements of mitochondrial transfer RNAs (tRNAs) that support a non-monophyletic Doryctinae consisting of two separate non-related clades with strong geographic structure (‘New World’ and ‘Old World’ clades). This geographic structure was also consistently supported by the phylogenetic analyses preformed with mitogenome and UCE sequence data. These results highlight the utility of the mitogenome gene rearrangements as a potential source of phylogenetic information at different evolutionary timescales.

Rubén Castañeda-Osorio, Sergey A. Belokobylskij, Jovana M. Jasso-Martínez, Ernesto Samacá-Sáenz, Robert R. Kula, and Alejandro Zaldívar-Riverón "Mitogenome architecture supports the non-monophyly of the cosmopolitan parasitoid wasp subfamily Doryctinae (Hymenoptera: Braconidae) recovered by nuclear and mitochondrial phylogenomics," Invertebrate Systematics 38(5), (13 May 2024). https://doi.org/10.1071/IS24029
Received: 17 March 2024; Accepted: 23 April 2024; Published: 13 May 2024
KEYWORDS
Hymenoptera
mitochondrial DNA
mitochondrial genome
Molecular phylogenetics
molecular systematics
morphology
nuclear DNA
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