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Chromatin remodeling complex HDA9-PWR-ABI4 epigenetically regulates drought stress response in plants

机译:染色质重塑复合物HDA9-PWR-ABI4表现出植物中的干旱应激反应

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摘要

Among all the major environmental challenges, drought stress causes considerable damage to plant growth and agricultural productivity. Drought stress directly promotes the accumulation of abscisic acid (ABA) via the activation of genes that encode enzymes involved in ABA biosynthesis, which protect the plant against water-limiting conditions. At the same time, the expression of genes that encode ABA-hydroxylases that inactivate the newly synthesized ABA, is repressed by drought stress. These phenomena occur through epigenetic modifications via the reversible processes of histone acetylation and deacetylation, also known as chromatin remodeling, which is an important regulatory mechanism that responds to various environmental stresses. Recently, we had reported that the chromatin remodeling complex HDA9-PWR-ABI4 promotes the development of drought tolerance through the deacetylation of CYP707A1/2 genes that encode the major enzymes involved in ABA catabolism. Here, we discuss the role of HDA9 and PWR in regulating drought stress by modulating the acetylation status of the CYP707A genes.
机译:在所有主要的环境挑战中,干旱压力会导致植物增长和农业生产力造成相当大的损害。干旱胁迫直接通过激活涉及参与ABA生物合成的基因的基因促进脱离酸(ABA)的积累,这保护植物免受限制性条件。同时,通过干旱胁迫将编码灭活新合成的ABA灭活的ABA-羟基酶的基因的表达。这些现象通过由甲蛋白乙酰化和脱乙酰化的可逆过程发生外观遗传修饰,也称为染色质重塑,这是一种重要的调节机制,其应对各种环境应力。最近,我们据报道,染色质重塑复合物HDA9-PWR-ABI4通过编码参与ABA分解代谢的主要酶的CYP707A1 / 2基因的脱乙酰化,促进干旱耐受性的发展。在这里,我们通过调节CYP707A基因的乙酰化状态,讨论HDA9和PWR在调节干旱胁迫中的作用。

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