Characterization of Mitochondrial Genomes and Evolutionary Relationships in Two Moenkhausia (Characiformes: Acestrorhamphidae)
Cheng‐He Sun, Xiao‐Die Chen, Yi‐Jing Zhan, Yang Xu, Chang‐Hu Lu

TL;DR
This study sequenced the mitochondrial genomes of two fish species to better understand their evolutionary relationships and classification.
Contribution
The study provides new mitochondrial genome data and phylogenetic insights for the Moenkhausia genus and related fish species.
Findings
The mitochondrial genomes of Moenkhausia rubra and Moenkhausia nigromarginata were sequenced and assembled.
Phylogenetic analysis confirmed the monophyly of Moenkhausia and revealed close genetic relationships between the two species.
Hyphessobrycon was found to be a paraphyletic group, with some species clustering with other genera.
Abstract
The family Acestrorhamphidae, comprising fish species with high nutritional and ornamental value, continues to face significant controversies regarding their systematic classification and evolutionary relationships. Due to notable convergent evolution and intraspecific variation in morphological characteristics, traditional morphological methods struggle to achieve reliable taxonomic delineation. In this study, high‐throughput sequencing technology was employed to sequence and assemble the mitochondrial genomes of two species, Moenkhausia rubra and Moenkhausia nigromarginata , with lengths of 16,439 and 16,461 bp, respectively. Both genomes exhibit the typical mitochondrial gene structure of vertebrates, along with a distinct AT base bias and an anti‐G bias. A phylogenetic tree constructed based on the mitochondrial genomes of 41 closely related species revealed that the genus…
Genes, proteins, chemicals, diseases, species, mutations and cell lines named across the full text — each resolved to its canonical identifier and authoritative record.
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Taxonomy
TopicsFish biology, ecology, and behavior · Genomics and Phylogenetic Studies · Ichthyology and Marine Biology
