Cargando…

The Complete Mitochondrial Genome of Glyptothorax macromaculatus Provides a Well-Resolved Molecular Phylogeny of the Chinese Sisorid Catfishes

Previous phylogenetic analyses of the Chinese sisorid catfishes have either been poorly resolved or have not included all the 12 sisorid genera. Here, we successfully assembled the first complete mitochondrial genome of the sisorid fish Glyptothorax macromaculatus. Based on this novel mitochondrial...

Descripción completa

Detalles Bibliográficos
Autores principales: Lv, Yunyun, Li, Yanping, Ruan, Zhiqiang, Bian, Chao, You, Xinxin, Yang, Junxing, Jiang, Wansheng, Shi, Qiong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6027347/
https://www.ncbi.nlm.nih.gov/pubmed/29867051
http://dx.doi.org/10.3390/genes9060282
_version_ 1783336590791147520
author Lv, Yunyun
Li, Yanping
Ruan, Zhiqiang
Bian, Chao
You, Xinxin
Yang, Junxing
Jiang, Wansheng
Shi, Qiong
author_facet Lv, Yunyun
Li, Yanping
Ruan, Zhiqiang
Bian, Chao
You, Xinxin
Yang, Junxing
Jiang, Wansheng
Shi, Qiong
author_sort Lv, Yunyun
collection PubMed
description Previous phylogenetic analyses of the Chinese sisorid catfishes have either been poorly resolved or have not included all the 12 sisorid genera. Here, we successfully assembled the first complete mitochondrial genome of the sisorid fish Glyptothorax macromaculatus. Based on this novel mitochondrial genome and previously published mitochondrial genomes in the Sisoridae, we generated maximum likelihood and Bayesian phylogenies. We dated our preferred topology using fossil calibration points. We also tested the protein-coding genes in the mitochondrial genomes of the glyptosternoid fishes for signals of natural selection by comparing the nucleotide substitution rate along the branch ancestral to the glyptosternoid fishes to other branches in our topology. The mitochondrial sequence structure of G. macromaculatus was similar to those known from other vertebrates, with some slight differences. Our sisorid phylogenies were well-resolved and well-supported, with exact congruence between the different phylogenetic methods. This robust phylogeny clarified the relationships among the Chinese sisorid genera and strongly supported the division of the family into three main clades. Interestingly, the glyptosternoid divergence time predicted by our molecular dating analysis coincided with the uplift of the Tibetan Plateau, suggesting that geology may have influenced speciation in the Sisoridae. Among the mitochondrial protein-coding genes, atp8 may have most rapidly evolved, and atp6 may have been subjected to positive selection pressure to adapt to high elevations. In summary, this study provided novel insights into the phylogeny, evolution and high-altitude adaptions of the Chinese sisorid fishes.
format Online
Article
Text
id pubmed-6027347
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-60273472018-07-13 The Complete Mitochondrial Genome of Glyptothorax macromaculatus Provides a Well-Resolved Molecular Phylogeny of the Chinese Sisorid Catfishes Lv, Yunyun Li, Yanping Ruan, Zhiqiang Bian, Chao You, Xinxin Yang, Junxing Jiang, Wansheng Shi, Qiong Genes (Basel) Article Previous phylogenetic analyses of the Chinese sisorid catfishes have either been poorly resolved or have not included all the 12 sisorid genera. Here, we successfully assembled the first complete mitochondrial genome of the sisorid fish Glyptothorax macromaculatus. Based on this novel mitochondrial genome and previously published mitochondrial genomes in the Sisoridae, we generated maximum likelihood and Bayesian phylogenies. We dated our preferred topology using fossil calibration points. We also tested the protein-coding genes in the mitochondrial genomes of the glyptosternoid fishes for signals of natural selection by comparing the nucleotide substitution rate along the branch ancestral to the glyptosternoid fishes to other branches in our topology. The mitochondrial sequence structure of G. macromaculatus was similar to those known from other vertebrates, with some slight differences. Our sisorid phylogenies were well-resolved and well-supported, with exact congruence between the different phylogenetic methods. This robust phylogeny clarified the relationships among the Chinese sisorid genera and strongly supported the division of the family into three main clades. Interestingly, the glyptosternoid divergence time predicted by our molecular dating analysis coincided with the uplift of the Tibetan Plateau, suggesting that geology may have influenced speciation in the Sisoridae. Among the mitochondrial protein-coding genes, atp8 may have most rapidly evolved, and atp6 may have been subjected to positive selection pressure to adapt to high elevations. In summary, this study provided novel insights into the phylogeny, evolution and high-altitude adaptions of the Chinese sisorid fishes. MDPI 2018-06-04 /pmc/articles/PMC6027347/ /pubmed/29867051 http://dx.doi.org/10.3390/genes9060282 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lv, Yunyun
Li, Yanping
Ruan, Zhiqiang
Bian, Chao
You, Xinxin
Yang, Junxing
Jiang, Wansheng
Shi, Qiong
The Complete Mitochondrial Genome of Glyptothorax macromaculatus Provides a Well-Resolved Molecular Phylogeny of the Chinese Sisorid Catfishes
title The Complete Mitochondrial Genome of Glyptothorax macromaculatus Provides a Well-Resolved Molecular Phylogeny of the Chinese Sisorid Catfishes
title_full The Complete Mitochondrial Genome of Glyptothorax macromaculatus Provides a Well-Resolved Molecular Phylogeny of the Chinese Sisorid Catfishes
title_fullStr The Complete Mitochondrial Genome of Glyptothorax macromaculatus Provides a Well-Resolved Molecular Phylogeny of the Chinese Sisorid Catfishes
title_full_unstemmed The Complete Mitochondrial Genome of Glyptothorax macromaculatus Provides a Well-Resolved Molecular Phylogeny of the Chinese Sisorid Catfishes
title_short The Complete Mitochondrial Genome of Glyptothorax macromaculatus Provides a Well-Resolved Molecular Phylogeny of the Chinese Sisorid Catfishes
title_sort complete mitochondrial genome of glyptothorax macromaculatus provides a well-resolved molecular phylogeny of the chinese sisorid catfishes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6027347/
https://www.ncbi.nlm.nih.gov/pubmed/29867051
http://dx.doi.org/10.3390/genes9060282
work_keys_str_mv AT lvyunyun thecompletemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT liyanping thecompletemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT ruanzhiqiang thecompletemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT bianchao thecompletemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT youxinxin thecompletemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT yangjunxing thecompletemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT jiangwansheng thecompletemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT shiqiong thecompletemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT lvyunyun completemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT liyanping completemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT ruanzhiqiang completemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT bianchao completemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT youxinxin completemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT yangjunxing completemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT jiangwansheng completemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes
AT shiqiong completemitochondrialgenomeofglyptothoraxmacromaculatusprovidesawellresolvedmolecularphylogenyofthechinesesisoridcatfishes