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陆地植物DNA去甲基化酶的全基因组分析及其在水稻中的表达模式

Genome-Wide Analysis of DNA Demethylases in Land Plants and Their Expression Pattern in Rice.

作者信息

Mao Shengxin, Xiao Jian, Zhao Yating, Hou Jiaqi, Li Lijia

机构信息

State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan 430072, China.

出版信息

Plants (Basel). 2024 Jul 26;13(15):2068. doi: 10.3390/plants13152068.

Abstract

DNA demethylation is a very important biochemical pathway regulating a group of biological processes, such as embryo development, fruit ripening, and response to stress. Despite the essential role of DNA demethylases, their evolutionary relationship and detailed biological functions in different land plants remain unclear. In this study, 48 DNA demethylases in 12 land plants were identified and classified. A phylogenetic tree was constructed to demonstrate the evolutionary relationships among these DNA demethylases, indicating how they are related across different species. Conserved domain, protein motif, and gene structure analysis showed that these 48 DNA demethylases fell into the presently identified four classes of DNA demethylases. Amino acid alignment revealed conserved catalytic sites and a previously less-studied protein region (referred to as domain A) within the DNA demethylases. An analysis showed a conserved pattern of gene duplication for DNA demethylases throughout their evolutionary history, suggesting that these genes had been maintained due to their importance. The examination of promoter cis-elements displayed potential signaling and regulating pathways of DNA demethylases. Furthermore, the expression profile was analyzed to investigate the physiological role of rice DNA demethylase in different developmental stages, in tissues, and in response to stress and various phytohormone signals. The findings offer a deeper insight into the functional regions of DNA demethylases and their evolutionary relationships, which can guide future research directions. Understanding the role of DNA demethylases can lead to improved plant stress resistance and contribute to the development of better crop and fruit varieties.

摘要

DNA去甲基化是调控一系列生物过程的非常重要的生化途径,这些生物过程包括胚胎发育、果实成熟以及对胁迫的响应。尽管DNA去甲基化酶起着至关重要的作用,但其在不同陆地植物中的进化关系和详细生物学功能仍不清楚。在本研究中,鉴定并分类了12种陆地植物中的48种DNA去甲基化酶。构建了系统发育树以展示这些DNA去甲基化酶之间的进化关系,表明它们在不同物种间是如何关联的。保守结构域、蛋白质基序和基因结构分析表明,这48种DNA去甲基化酶可分为目前已鉴定出的四类DNA去甲基化酶。氨基酸比对揭示了DNA去甲基化酶中保守的催化位点和一个此前研究较少的蛋白质区域(称为结构域A)。一项分析显示,DNA去甲基化酶在其整个进化历史中存在保守的基因复制模式,这表明这些基因因其重要性而得以保留。对启动子顺式元件的检测展示了DNA去甲基化酶潜在的信号传导和调控途径。此外,分析了表达谱以研究水稻DNA去甲基化酶在不同发育阶段、组织中以及对胁迫和各种植物激素信号响应中的生理作用。这些发现为深入了解DNA去甲基化酶的功能区域及其进化关系提供了见解,可指导未来的研究方向。了解DNA去甲基化酶的作用有助于提高植物的抗逆性,并有助于培育更好的作物和水果品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3bf/11314353/b29deb635ba1/plants-13-02068-g001.jpg

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