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首页> 外文期刊>Plant Physiology and Biochemistry >Histone acetylation influences the transcriptional activation of POX in Beta vulgaris L. and Beta maritima L. under salt stress
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Histone acetylation influences the transcriptional activation of POX in Beta vulgaris L. and Beta maritima L. under salt stress

机译:组蛋白乙酰化影响盐胁迫下寻常型甜菜和甜菜中POX的转录激活

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摘要

Acetylation of histone proteins is a type of chromatin modification which facilitates the activation of genes. Recent studies brought up the importance of this reversible and rapid process for the regulation of gene expression especially in plant defense against a variety of environmental stresses. Deciphering the exact mechanisms of chromatin modifications under abiotic stress conditions is important for improving crop plants' performance and yield. In a previous study we compared the salt stress responses of Beta vulgaris (sugar beet) and Beta maritima (wild beet). In accordance with those results we suggested that chromatin remodeling can be an active process in the regulation of genes related to salt stress tolerance of these plants. Therefore we performed ChIP assay in control and salt stressed (250 and 500 mM NaCl) plants and compared the enrichment of acetylation in the associated chromatin sites. We found that the transcriptional activation of one peroxidase (PDX) encoding gene was associated with the elevated levels of acetylation in H3K9 and H3K27 sites. The acetylation patterns were remarkably different between two species in which the highest acetylation levels were found at H3K9 and H3K27 in wild beet and sugar beet respectively. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:组蛋白的乙酰化是一种染色质修饰,可促进基因活化。最近的研究提出了这种可逆且快速的过程对于调节基因表达的重要性,尤其是在植物抵抗各种环境胁迫的过程中。破解非生物胁迫条件下染色质修饰的确切机制对于提高农作物的性能和产量很重要。在先前的研究中,我们比较了甜菜(甜菜)和海地甜菜(野生甜菜)的盐胁迫响应。根据这些结果,我们认为染色质重塑可能是调控这些植物耐盐胁迫相关基因的一个活跃过程。因此,我们在对照和盐胁迫(250和500 mM NaCl)植物中进行了ChIP分析,并比较了相关染色质位点中乙酰化的富集程度。我们发现一种过氧化物酶(PDX)编码基因的转录激活与H3K9和H3K27位点的乙酰化水平升高有关。两种甜菜的乙酰化模式明显不同,其中在野生甜菜和甜菜中分别在H3K9和H3K27处发现了最高的乙酰化水平。 (C)2016 Elsevier Masson SAS。版权所有。

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