春化
DNA甲基化
生物
表观遗传学
DNA甲基转移酶
舌苔
遗传学
基因
亚硫酸氢盐测序
DNA去甲基化
甲基化
差异甲基化区
基因表达
植物
禾本科
作者
Zhongfu Yang,Haidong Yan,Jianping Wang,Gang Nie,Guangyan Feng,Xiaoheng Xu,Dandan Li,Linkai Huang,Xinquan Zhang
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2022-07-21
卷期号:190 (2): 1490-1505
被引量:23
标识
DOI:10.1093/plphys/kiac335
摘要
Abstract Vernalization, influenced by environmental factors, is an essential process associated with the productivity of temperate crops, during which epigenetic regulation of gene expression plays an important role. Although DNA methylation is one of the major epigenetic mechanisms associated with the control of gene expression, global changes in DNA methylation in the regulation of gene expression during vernalization-induced flowering of temperate plants remain largely undetermined. To characterize vernalization-associated DNA methylation dynamics, we performed whole-genome bisulfite-treated sequencing and transcriptome sequencing in orchardgrass (Dactylis glomerata) during vernalization. The results revealed that increased levels of genome DNA methylation during the early vernalization of orchardgrass were associated with transcriptional changes in DNA methyltransferase and demethylase genes. Upregulated expression of vernalization-related genes during early vernalization was attributable to an increase in mCHH in the promoter regions of these genes. Application of an exogenous DNA methylation accelerator or overexpression of orchardgrass NUCLEAR POLY(A) POLYMERASE (DgPAPS4) promoted earlier flowering, indicating that DNA hypermethylation plays an important role in vernalization-induced flowering. Collectively, our findings revealed that vernalization-induced hypermethylation is responsible for floral primordium initiation and development. These observations provide a theoretical foundation for further studies on the molecular mechanisms underlying the control of vernalization in temperate grasses.
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