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Effect of 5-azacytidine induced DNA demethylation on abiotic stress tolerance in Arabidopsis thaliana

机译:5-氮杂胞苷诱导的DNA去甲基化对拟南芥非生物胁迫耐受性的影响

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The effect of 5-azacytidine (5A)-induced DNA hypomethylation on the growth and abiotic stress tolerance of Arabidopsis thaliana were analysed. Growth analysis revealed that aqueous solutions of 5A added to the soil did not affect the fresh and dry biomass accumulation but led to a higher percentage of flowering A. thaliana plants after four weeks of cultivation. The 5A treatment considerably lowered survival rates of Arabidopsis plants under high soil salinity, heat stress, and drought, while it did not affect the survival rates after freezing stress. 5A eliminated the stimulatory effect of the heat and drought stresses on the transcriptional levels of a number of stress-inducible genes, such as DREB1, LEA, SOS1, or RD29A. A less clear but similar trend has been detected for the effect of 5A on expression of the stress-inducible genes under salt and cold stresses. The data indicate that DNA methylation is an important mechanism regulating plant abiotic stress resistance.
机译:分析了5-氮杂胞苷(5A)诱导的DNA低甲基化对拟南芥生长和非生物胁迫耐受性的影响。生长分析表明,添加到土壤中的5A水溶液不会影响新鲜和干燥的生物量积累,但在培养四周后导致开花的拟南芥植物百分比更高。 5A处理显着降低了高盐度,热胁迫和干旱条件下拟南芥植物的存活率,但它并没有影响冷冻胁迫后的存活率。图5A消除了高温和干旱胁迫对许多胁迫诱导性基因如DREB1,LEA,SOS1或RD29A的转录水平的刺激作用。对于盐和冷胁迫下5A对胁迫诱导基因表达的影响,目前还没有发现一个清晰但相似的趋势。数据表明DNA甲基化是调节植物非生物逆境抗性的重要机制。

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