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重新审视鲑亚科的有丝分裂基因组系统发育:得益于近期测序技术的进步而获得的新见解。

Revisiting the mitogenomic phylogeny of Salmoninae: new insights thanks to recent sequencing advances.

作者信息

Horreo Jose L

机构信息

Department of Biodiversity and Evolutionary Biology, National Museum of Natural Sciences (CSIC), Madrid, Spain.

出版信息

PeerJ. 2017 Sep 18;5:e3828. doi: 10.7717/peerj.3828. eCollection 2017.

Abstract

The phylogeny of the Salmonidae family, the only living one of the Order Salmoniformes, remains still unclear because of several reasons. Such reasons include insufficient taxon sampling and/or DNA information. The use of complete mitochondrial genomes (mitogenomics) could provide some light on it, but despite the high number of mitogenomes of species belonging to this family published during last years, an integrative work containing all this information has not been done. In this work, the phylogeny of 46 Salmonidae species was inferred from their mitogenomic sequences. Results include a Bayesian molecular-dated phylogenetic tree with very high statistical support showing Coregoninae and Salmoninae as sister subfamilies, as well as several new phylogenetic relationships among species and genus of the family. All these findings contribute to improve our understanding of the Salmonidae systematics and could have consequences on related evolutionary studies, as well as highlight the importance of revisiting phylogenies with integrative studies.

摘要

鲑科是鲑形目唯一现存的科,由于多种原因,其系统发育仍不清楚。这些原因包括分类群采样不足和/或DNA信息不足。完整线粒体基因组(线粒体基因组学)的使用可能会对此有所帮助,但尽管近年来已发表了该科众多物种的线粒体基因组,但尚未进行包含所有这些信息的综合研究。在这项研究中,从46种鲑科物种的线粒体基因组序列推断出其系统发育。结果包括一棵具有很高统计支持度的贝叶斯分子年代系统发育树,显示白鲑亚科和鲑亚科为姐妹亚科,以及该科物种和属之间的几个新系统发育关系。所有这些发现有助于增进我们对鲑科系统分类的理解,并可能对相关进化研究产生影响,同时也凸显了通过综合研究重新审视系统发育的重要性。

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