Effects of ploidy variation on promoter DNA methylation and gene expression in rice (Oryza sativa L.)

生物 甲基化DNA免疫沉淀 DNA甲基化 基因 亚硫酸氢盐测序 遗传学 基因表达 RNA导向的DNA甲基化 甲基化 表观遗传学 表观遗传学 差异甲基化区 倍性
作者
Hongyu Zhang,Asif Ali,Feixue Hou,Tingkai Wu,Daiming Guo,Xiufeng Zeng,Fangfang Wang,Hui-Xia Zhao,Xiaoqiong Chen,Peizhou Xu,Xiaoyun Wu
出处
期刊:BMC Plant Biology [Springer Nature]
卷期号:18 (1) 被引量:6
标识
DOI:10.1186/s12870-018-1553-5
摘要

Polyploidy, or whole-genome duplication (WGD) promotes genetic diversification in plants. However, whether WGD is accompanied by epigenetic regulation especially DNA methylation remains yet elusive. Methylation of different region in genomic DNA play discrete role in gene regulation and developmental processes in plants. In our study, we used an apomictic rice line (SARII-628) that produces twin seedlings of different ploidy for methylated DNA immunoprecipitation sequencing (MeDIP-seq). We compared the level of methylation and mRNA expression in three different (CG, CHG, and CHH) sequence contexts of promoter region among haploid (1X), diploid (2X), and triploid (3X) seedling. We used MeDIP-Seq analysis of 14 genes to investigate whole genome DNA methylation and found that relative level of DNA methylation across different ploidy was in following order e.g. diploid > triploid > haploid. GO functional classification of differentially methylated genes into 9 comparisons group of promoter, intergenic and intragenic region discovered, these genes were mostly enriched for cellular component, molecular function, and biological process. By the comparison of methylome data, digital gene expression (DGE), mRNA expression profile, and Q-PCR findings LOC_ Os07g31450 and LOC_ Os01g59320 were analyzed for BS-Seq (Bisulphite sequencing). We found that (1) The level of the promoter DNA methylation is negatively correlated with gene expression within each ploidy level. (2) Among all ploidy levels, CG sequence context had highest methylation frequency, and demonstrated that the high CG methylation did reduce gene expression change suggesting that DNA methylation exert repressive function and ensure genome stability during WGD. (3) Alteration in ploidy (from diploid to haploid, or diploid to triploid) reveals supreme changes in methylation frequency of CHH sequence context. Our finding will contribute an understanding towards lower stability of CHH sequence context and educate the effect of promoter region methylation during change in ploidy state in rice.
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