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Role of epigenetic mechanisms in plant response to low temperature

机译:表观遗传机制在植物对低温的响应中的作用

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Plants are continuously exposed to various environmental stresses and they respond to them in different ways. Ambient temperature is among the most important environmental cues that directly influence plant growth and yield. Research in recent years has revealed that epigenetic mechanisms play a key role in plants' response to temperature stress. Changes in gene expression evoked by stress signals follow post-translational histone modifications, DNA methylation, histone variant incorporation, and the action of chromatin remodeling factors and Polycomb group proteins. The majority of epigenetic modifications induced by temperature stress are reversible in nature; thus, chromatin returns to its previous state after the stress has passed. Some modifications seem stable, however, due presumably to so-called stress memory. Epigenetic modifications can be inherited through mitosis and meiosis. By dint of epigenetic memory, plants can more efficiently respond to future stressful conditions, thereby increasing their potential for environmental adaptation. Recognition of the epigenetic mechanisms that take part in plants' response to changes of ambient temperature will increase our understanding of adaptations to stress conditions.
机译:植物不断受到各种环境压力的影响,它们以不同的方式对它们做出反应。环境温度是直接影响植物生长和产量的最重要的环境线索之一。近年来的研究表明,表观遗传机制在植物对温度胁迫的反应中起着关键作用。应激信号引起的基因表达变化发生在翻译后组蛋白修饰,DNA甲基化,组蛋白变体掺入以及染色质重塑因子和Polycomb组蛋白的作用上。温度胁迫引起的大多数表观遗传修饰本质上是可逆的。因此,染色质经过压力后会恢复到之前的状态。但是,某些修改似乎是稳定的,大概是由于所谓的应力记忆。表观遗传修饰可以通过有丝分裂和减数分裂遗传。通过表观遗传记忆,植物可以更有效地应对未来的胁迫条件,从而增加其适应环境的潜力。对参与植物对环境温度变化的反应的表观遗传机制的认识将增加我们对逆境条件适应性的理解。

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