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四倍体鱼的基因组为早期重新二倍体化和高海拔适应提供了见解。

Genome of Tetraploid Fish Provides Insights into Early Re-diploidization and High-Altitude Adaptation.

作者信息

Xiao Shijun, Mou Zhenbo, Fan Dingding, Zhou He, Zou Ming, Zou Yu, Zhou Chaowei, Yang Ruibin, Liu Jiaqi, Zhu Shilin, Li Yajuan, Liu Yanchao, Liu Fei, Wang Wanliang, Zeng Benhe, Li Hong, Wang Di, Liu Haiping

机构信息

Institute of Fisheries Science, Tibet Academy of Agricultural and Animal Husbandry Sciences, Lhasa, China.

Department of Computer Science, Wuhan University of Technology, Wuhan, China.

出版信息

iScience. 2020 Aug 22;23(9):101497. doi: 10.1016/j.isci.2020.101497. eCollection 2020 Sep 25.

Abstract

Whole-genome duplications (WGDs) of Schizothoracinae are believed to have played a significant role in speciation and environmental adaptation on the Qinghai-Tibet Plateau (QTP). Here, we present a genome for , a QTP endemic fish and showed the species as a young tetraploid with a recent WGD later than ∼1.23 mya. We exhibited that massive insertions between duplicated genomes caused by transposon bursts could induce mutagenesis in adjacent sequences and alter the expression of neighboring genes, representing an early re-diploidization process in a polyploid genome after WGD. Meanwhile, we found that many genes involved in DNA repair and folate transport/metabolism experienced natural selection and might contribute to the environmental adaptation of this species. Therefore, the genome could serve as a young tetraploid model for investigations of early re-diploidization in polyploid genomes and offers an invaluable genetic resource for environmental adaptation studies of the endemic fish of the QTP.

摘要

裂腹鱼亚科的全基因组复制(WGDs)被认为在青藏高原(QTP)的物种形成和环境适应中发挥了重要作用。在此,我们展示了一种QTP特有鱼类—— 的基因组,并表明该物种是一个年轻的四倍体,其最近的WGD发生在约123万年前之后。我们发现,转座子爆发导致的重复基因组间的大量插入可诱导相邻序列发生诱变并改变邻近基因的表达,这代表了WGD后多倍体基因组中的早期再二倍体化过程。同时,我们发现许多参与DNA修复和叶酸转运/代谢的基因经历了自然选择,可能有助于该物种的环境适应。因此, 基因组可作为研究多倍体基因组早期再二倍体化的年轻四倍体模型,并为QTP特有鱼类的环境适应研究提供了宝贵的遗传资源。

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