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Bisulphite sequencing reveals dynamic DNA methylation under desiccation and salinity stresses in rice cultivars

机译:亚硫酸氢盐测序显示水稻品种干燥和盐度胁迫下的动态DNA甲基化

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DNA methylation governs gene regulation in plants in response to environmental conditions. Here, we analyzed role of DNA methylation under desiccation and salinity stresses in three (IR64, stress-sensitive; Nagina 22, drought-tolerant and Pokkali, salinity-tolerant) rice cultivars via bisulphite sequencing. Methylation in CG context within gene body and methylation in CHH context in distal promoter regions were positively correlated with gene expression. Hypomethylation in Nagina 22 and hypermethylation in Pokkali in response to desiccation and salinity stresses, respectively, were correlated with higher expression of few abiotic stress response related genes. Most of the differentially methylated and differentially expressed genes (DMR-DEGs) were cultivar-specific, suggesting an important role of DNA methylation in abiotic stress responses in rice in cultivar-specific manner. DMR-DEGs harboring differentially methylated cytosines due to DNA polymorphisms between the sensitive and tolerant cultivars in their promoter regions and/or coding regions were identified, suggesting the role of epialleles in abiotic stress responses.
机译:DNA甲基化治理植物中的基因调控以应对环境条件。在这里,我们在三次(IR64,胁迫敏感的盐度应力下DNA甲基化在干燥和盐度应力下分析了作用。通过双硫酸氢盐测序,盐度耐受盐度,盐度,盐度耐受性)水稻品种。在远端启动子区域中基因体内的CG上下文中的CG上下文中的甲基化与基因表达呈正相关。分别与少量消毒和盐度应力分别响应于干燥和盐度应力的萘铝22中的低甲基化与少数非生物应激响应相关基因的表达相关。大多数差异甲基化和差异表达的基因(DMR-DEG)是品种特异性的,表明DNA甲基化在栽培品种特异性方式中的非生物应激反应中的重要作用。鉴定了在其启动子区域和/或编码区中敏感和耐受品种之间的DNA多态性含有差异甲基化胞嘧啶的DMR-DEGS,表明EPialleles在非生物应激反应中的作用。

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