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DNA methylation changes in response to sulfur dioxide stress in Arabidopsis plants

机译:拟南芥植物中的二氧化硫胁迫致致硫的甲基化变化

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Sulfur dioxide (SO2) exposure causes alterations of DNA cytosine methylation in Arabidopsis genome. Analysis of methylation-sensitive amplified polymorphism (MSAP) revealed that SO2 induced methylation changes of cytosine in CCGG sites, in which hypermethylation is more than hypomethylation. Bisulfite sequencing showed that the methyaltion levels of cytosine in promoter regions of Arabidopsis genes encoding 1-aminocyclopropane-1-carboxylic acid synthase 6 and nitrilase 2 decreased accompanying with enhanced transcript levels. The global genome hypermethylation and locus-specific hypomethylation in Arabidopsis cells, which contribute to genome stability and gene regulation, can be considered as a very important regulatory mechanism for plants adaption to environmental stress.
机译:二氧化硫(SO2)暴露导致拟南芥基因组中DNA胞嘧啶甲基化的改变。甲基化敏感扩增多态性(MSAP)的分析表明,SO2诱导CCGG位点中胞嘧啶的甲基化变化,其中高甲基化大于低甲基化。亚硫酸氢盐测序表明,编码1-氨基环丙烷-1-羧酸合酶6和腈酶2的拟南芥基因的启动子区域中胞嘧啶的甲基溴酸水平降低,随着增强的转录水平降低。拟南芥细胞中的全球基因组高甲基化和特异性低甲基化,其有助于基因组稳定性和基因调控,可被认为是植物适应环境压力的一个非常重要的调节机制。

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