Evolutionary Rates, Divergence Rates, and Performance of Individual Mitochondrial Genes Based on Phylogenetic Analysis of Copepoda

Copepoda is a large and diverse group of crustaceans, which is widely distributed worldwide. It encompasses roughly 9 orders, whose phylogeny remains unresolved. We sequenced the complete mitochondrial genome (mitogenome) of <i>Sinergasilus major</i> (Markevich, 1940) and used it to expl...

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Bibliographic Details
Main Authors: Junzong He, Zhihao Zhou, Yan Huang, Jinmei Feng, Wenxiang Li, Guitang Wang, Congjie Hua
Format: Article
Language:English
Published: MDPI AG 2023-07-01
Series:Genes
Subjects:
Online Access:https://www.mdpi.com/2073-4425/14/7/1496
Description
Summary:Copepoda is a large and diverse group of crustaceans, which is widely distributed worldwide. It encompasses roughly 9 orders, whose phylogeny remains unresolved. We sequenced the complete mitochondrial genome (mitogenome) of <i>Sinergasilus major</i> (Markevich, 1940) and used it to explore the phylogeny and mitogenomic evolution of Copepoda. The mitogenome of <i>S. major</i> (14,588 bp) encodes the standard 37 genes as well as a putative control region, and molecular features are highly conserved compared to other Copepoda mitogenomes. Comparative analyses indicated that the <i>nad2</i> gene has relatively high nucleotide diversity and evolutionary rate, as well as the largest amount of phylogenetic information. These results indicate that <i>nad2</i> may be a better marker to investigate phylogenetic relationships among closely related species in Copepoda than the commonly used <i>cox1</i> gene. The sister-group relationship of Siphonostomatoida and Cyclopoida was recovered with strong support in our study. The only topological ambiguity was found within Cyclopoida, which might be caused by the rapid evolution and sparse taxon sampling of this lineage. More taxa and genes should be used to reconstruct the Copepoda phylogeny in the future.
ISSN:2073-4425