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Genome-wide identification, classification and expression analysis of the JmjC domain-containing histone demethylase gene family in maize

机译:玉米含有JMJC域组蛋白脱甲基酶基因家族的基因组鉴定,分类和表达分析

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Histone methylation mainly occurs on the lysine residues and plays a crucial role during flowering and stress responses of plants, through changing the methylation status or ratio of lysine residues. Histone lysine residues of plants can arise in three forms of methylation (single, double and triple) and the corresponding demethylation can also ensue on certain occasions, by which the plants can accommodate the homeostasis of histone methylation by means of lysine methyltransferase and demethylase. The JmjC domain-containing proteins, an important family of histone lysine demethylases, play a vital role in maintaining homeostasis of histone methylation in vivo. In this study, we have identified 19 JmjC domain-containing histone demethylase (JHDM) proteins in maize. Based on structural characteristics and a comparison of phylogenetic relationships of JHDM gene families from Arabidopsis, rice and maize, all 19 JHDM proteins in maize were categorized into three different subfamilies. Furthermore, chromosome location and schematic structure revealed an unevenly distribution on chromosomes and structure features of ZmJMJ genes in maize, respectively. Eventually, the 19 ZmJMJ genes displayed different expression patterns at diverse developmental stages of maize based on transcriptome analysis. Further, quantitative real-time PCR analysis showed that all 19 ZmJMJ genes were responsive to heat stress treatment, suggesting their potential roles in heat stress response. Overall, our study will serve to present an important theoretical basis for future functional verification of JHDM genes to further unravel the mechanisms of epigenetic regulation in plants.
机译:组蛋白甲基化主要发生在赖氨酸残基上,并在开花和植物的应力反应期间发挥至关重要的作用,通过改变赖氨酸残基的甲基化状态或比例。植物的组蛋白赖氨酸残基可以以三种形式的甲基化(单,双和三倍)出现,并且相应的去甲基化也可以在某些情况下随之而来,通过赖氨酸甲基转移酶和去甲基酶可以容纳组蛋白甲基化的稳态。含JMJC域的蛋白质,是组蛋白赖氨酸脱甲基酶的重要家族,在维持体内组蛋白甲基化的稳态中起着至关重要的作用。在该研究中,我们在玉米中鉴定了含19个JMJC含有域的组蛋白脱甲基酶(JHDM)蛋白。基于结构特征和JHDM基因家族从拟南芥,水稻和玉米的系统发育关系的比较,玉米中的所有19个JHDM蛋白分为三种不同的亚壳。此外,染色体位置和示意性结构分别揭示了玉米ZMJMJ基因染色体和结构特征的不均匀分布。最终,基于转录组分析,19 ZMJMJ基因以不同的发展阶段显示不同的表达模式。此外,定量实时PCR分析表明,所有19个ZMJMJ基因对热应激处理响应,表明其在热应激反应中的潜在作用。总体而言,我们的研究将用于对JHDM基因的未来功能验证提供重要的理论依据,以进一步解开植物中表观遗传调控的机制。

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