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水稻全基因组EMS诱变偏差与序列背景和染色质结构相关。

The Genome-Wide EMS Mutagenesis Bias Correlates With Sequence Context and Chromatin Structure in Rice.

作者信息

Yan Wei, Deng Xing Wang, Yang Chengwei, Tang Xiaoyan

机构信息

Guangdong Provincial Key Laboratory of Biotechnology for Plant Development, School of Life Sciences, South China Normal University, Guangzhou, China.

Shenzhen Institute of Molecular Crop Design, Shenzhen, China.

出版信息

Front Plant Sci. 2021 Mar 24;12:579675. doi: 10.3389/fpls.2021.579675. eCollection 2021.

Abstract

Ethyl methanesulfonate (EMS) is a chemical mutagen believed to mainly induce G/C to A/T transitions randomly in plant genomes. However, mutant screening for phenotypes often gets multiple alleles for one gene but no mutant for other genes. We investigated the potential EMS mutagenesis bias and the possible correlations with sequence context and chromatin structure using the whole genome resequencing data collected from 52 rice EMS mutants. We defined the EMS-induced single nucleotide polymorphic sites (SNPs) and explored the genomic factors associated with EMS mutagenesis bias. Compared with natural SNPs presented in the Rice3K project, EMS showed a preference on G/C sites with flanking sequences also higher in GC contents. The composition of local dinucleotides and trinucleotides was also associated with the efficiency of EMS mutagenesis. The biased distribution of EMS-induced SNPs was positively correlated with CpG numbers, transposable element contents, and repressive epigenetic markers but negatively with gene expression, the euchromatin marker DNase I hypersensitive sites, and active epigenetic markers, suggesting that sequence context and chromatin structure might correlate with the efficiency of EMS mutagenesis. Exploring the genome-wide features of EMS mutagenesis and correlations with epigenetic modifications will help in the understanding of DNA repair mechanism.

摘要

甲基磺酸乙酯(EMS)是一种化学诱变剂,据信它主要在植物基因组中随机诱导G/C到A/T的转换。然而,通过表型筛选突变体时,常常会发现一个基因有多个等位基因,而其他基因却没有突变体。我们利用从52个水稻EMS突变体收集的全基因组重测序数据,研究了潜在的EMS诱变偏差以及与序列背景和染色质结构的可能相关性。我们定义了EMS诱导的单核苷酸多态性位点(SNPs),并探索了与EMS诱变偏差相关的基因组因素。与水稻3K计划中呈现的自然SNP相比,EMS对侧翼序列GC含量也较高的G/C位点表现出偏好。局部二核苷酸和三核苷酸的组成也与EMS诱变效率相关。EMS诱导的SNP的偏向分布与CpG数量、转座子含量和抑制性表观遗传标记呈正相关,但与基因表达、常染色质标记DNase I超敏位点和活性表观遗传标记呈负相关,这表明序列背景和染色质结构可能与EMS诱变效率相关。探索EMS诱变的全基因组特征以及与表观遗传修饰的相关性将有助于理解DNA修复机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2b1/8025102/5f5f588a49ba/fpls-12-579675-g001.jpg

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