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日本三角涡虫首个完整线粒体基因组中的新型重复片段和三肠科的独特系统发育地位。

Novel duplication remnant in the first complete mitogenome of Hemitriakis japanica and the unique phylogenetic position of family Triakidae.

机构信息

College of Marine Sciences, South China Agriculture University, Guangzhou 510642, China.

Guangxi Academy of Oceanography, Nanning 530000, China.

出版信息

Gene. 2022 Apr 30;820:146232. doi: 10.1016/j.gene.2022.146232. Epub 2022 Jan 31.

Abstract

In this study, we firstly determined the complete mitogenome of the Japanese topeshark (Hemitriakis japonica), which belong to the family Triakidae and was assessed as Endangered A2d on the IUCN Red List in 2021. The mitogenome is 17,301 bp long, has a high AT content (60.0%), and contains 13 protein-coding genes, 22 tRNA genes, 2 rRNA genes, a control region and specially a 594 bp-long non-coding region between Cytb gene and tRNA-Thr gene. The novel non-coding region share high sequence similarity with segments of the former and latter genes, so it was recognized as a duplication remnant. In addition, the Cytb gene and tRNA-Thr gene tandemly duplicated twice while accompanied by being deleted once at least. This is the first report of mitogenomic gene-arrangement in Triakidae. The phylogenetic trees were constructed using Bayesian inference (BI) and maximum likelihood (ML) methods based on the mitogenomic data of 51 shark species and two outgroups. In summary, basing on a novel type of gene rearrangements in houndshark mitogenome, the possibly rearranged process was analyzed and contributed further insight of shark mitogenomes evolution and phylogeny.

摘要

在这项研究中,我们首次确定了日本长尾鲨(Hemitriakis japonica)的完整线粒体基因组。该物种属于长尾鲨科,在 2021 年的 IUCN 红色名录中被评估为濒危物种 A2d。线粒体基因组全长 17301bp,具有较高的 AT 含量(60.0%),包含 13 个蛋白编码基因、22 个 tRNA 基因、2 个 rRNA 基因、一个控制区和一个特别的位于 Cytb 基因和 tRNA-Thr 基因之间的 594bp 长的非编码区。这个新的非编码区与前、后基因的片段具有高度相似的序列,因此被认为是一个重复的残余物。此外,Cytb 基因和 tRNA-Thr 基因发生了两次串联重复,同时至少发生了一次缺失。这是在长尾鲨科中首次报道线粒体基因组基因排列。基于 51 种鲨鱼和两个外群的线粒体基因组数据,使用贝叶斯推断(BI)和最大似然法(ML)构建了系统发育树。总之,基于长尾鲨线粒体基因组中一种新型的基因重排,我们分析了可能的重排过程,进一步深入了解了鲨鱼线粒体基因组的进化和系统发育。

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