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Chromatin changes in response to drought, salinity, heat, and cold stresses in plants

机译:染色质响应植物的干旱,盐分,高温和低温胁迫而变化

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Chromatin regulation is essential to regulate genes and genome activities. In plants, the alteration of histone modification and DNA methylation are coordinated with changes in the expression of stress-responsive genes to adapt to environmental changes. Several chromatin regulators have been shown to be involved in the regulation of stress-responsive gene networks under abiotic stress conditions. Specific histone modification sites and the histone modifiers that regulate key stress-responsive genes have been identified by genetic and biochemical approaches, revealing the importance of chromatin regulation in plant stress responses. Recent studies have also suggested that histone modification plays an important role in plant stress memory. In this review, we summarize recent progress on the regulation and alteration of histone modification (acetylation, methylation, phosphorylation, and SUMOylation) in response to the abiotic stresses, drought, high-salinity, heat, and cold in plants.
机译:染色质调节对于调节基因和基因组活性至关重要。在植物中,组蛋白修饰和DNA甲基化的改变与应激反应基因的表达变化相适应,以适应环境变化。在非生物胁迫条件下,已经证明了几种染色质调节剂参与了应激反应基因网络的调节。已通过遗传和生化方法鉴定了特定的组蛋白修饰位点和调节关键胁迫响应基因的组蛋白修饰剂,从而揭示了染色质调控在植物胁迫响应中的重要性。最近的研究还表明,组蛋白修饰在植物胁迫记忆中起重要作用。在这篇综述中,我们总结了响应非生物胁迫,干旱,高盐度,高温和低温的组蛋白修饰(乙酰化,甲基化,磷酸化和SUMO化)的调控和改变的最新进展。

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