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遗传和表观遗传变化是基因组对新合成的同源四倍体的快速反应。

Genetic and Epigenetic Changes Are Rapid Responses of the Genome to the Newly Synthesized Autotetraploid .

作者信息

Wang Chongqing, Zhou Yuwei, Qin Huan, Zhao Chun, Yang Li, Yu Tingting, Zhang Yuxin, Xu Tao, Qin Qinbo, Liu Shaojun

机构信息

State Key Laboratory of Developmental Biology of Freshwater Fish, Engineering Research Center of Polyploid Fish Reproduction and Breeding of the State Education Ministry, College of Life Sciences, Hunan Normal University, Changsha, China.

Hunan Normal University, Changsha, China.

出版信息

Front Genet. 2021 Jan 7;11:576260. doi: 10.3389/fgene.2020.576260. eCollection 2020.

Abstract

Whole genome duplication events have occurred frequently during the course of vertebrate evolution. To better understand the influence of polyploidization on the fish genome, we herein used the autotetraploid (4n = 200, RRRR) (4nRR) resulting from the whole genome duplication of (2n = 100, RR) (RCC) to explore the genomic and epigenetic alterations after polyploidization. We subsequently performed analyses of full-length transcriptome dataset, amplified fragment length polymorphism (AFLP) and methylation sensitive amplification polymorphism (MSAP) on 4nRR and RCC. By matching the results of 4nRR and RCC isoforms with reference genome in full-length transcriptome dataset, 649 and 1,971 novel genes were found in the RCC and 4nRR full-length geneset, respectively. Compared to and , 4nRR presented 3,661 unexpressed genes and 2,743 expressed genes. Furthermore, GO enrichment analysis of expressed genes in 4nRR revealed that they were enriched in meiosis I, whereas KEGG enrichment analysis displayed that they were mainly enriched in proteasome. Using AFLP analysis, we noted that 32.61% of RCC fragments had disappeared, while 32.79% of new bands were uncovered in 4nRR. Concerning DNA methylation, 4nRR exhibited a lower level of global DNA methylation than RCC. Additionally, 60.31% of methylation patterns in 4nRR were altered compared to RCC. These observations indicated that transcriptome alterations, genomic changes and regulation of DNA methylation levels and patterns had occurred in the newly established autotetraploid genomes, suggesting that genetic and epigenetic alterations were influenced by autotetraploidization. In summary, this study provides valuable novel insights into vertebrate genome evolution and generates relevant information for fish breeding.

摘要

在脊椎动物进化过程中,全基因组复制事件频繁发生。为了更好地理解多倍体化对鱼类基因组的影响,我们在此使用由(2n = 100,RR)(RCC)全基因组复制产生的同源四倍体(4n = 200,RRRR)(4nRR)来探索多倍体化后的基因组和表观遗传变化。随后,我们对4nRR和RCC进行了全长转录组数据集、扩增片段长度多态性(AFLP)和甲基化敏感扩增多态性(MSAP)分析。通过将4nRR和RCC异构体的结果与全长转录组数据集中的参考基因组进行匹配,在RCC和4nRR全长基因集中分别发现了649个和1971个新基因。与RCC相比,4nRR有3661个未表达基因和2743个表达基因。此外,对4nRR中表达基因的GO富集分析表明,它们在减数分裂I中富集,而KEGG富集分析显示它们主要富集在蛋白酶体中。使用AFLP分析,我们注意到RCC片段的32.61%已经消失,而在4nRR中发现了32.79%的新条带。关于DNA甲基化,4nRR的整体DNA甲基化水平低于RCC。此外,与RCC相比,4nRR中60.31%的甲基化模式发生了改变。这些观察结果表明,在新建立的同源四倍体基因组中发生了转录组变化、基因组改变以及DNA甲基化水平和模式的调控,这表明遗传和表观遗传变化受到同源四倍体化的影响。总之,本研究为脊椎动物基因组进化提供了有价值的新见解,并为鱼类育种产生了相关信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c0a/7817996/27e837907cf9/fgene-11-576260-g001.jpg

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