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表观遗传和表转录组修饰在暴露于非必需金属的植物中的作用。

The role of epigenetic and epitranscriptomic modifications in plants exposed to non-essential metals.

作者信息

Chmielowska-Bąk Jagna, Searle Iain Robert, Wakai Theophilus Nang, Arasimowicz-Jelonek Magdalena

机构信息

Department of Plant Ecophysiology, Institute of Experimental Biology, Faculty of Biology, Adam Mickiewicz University, Poznań, Poland.

Discipline of Molecular and Biomedical Sciences, School of Biological Sciences, The University of Adelaide, Adelaide, SA, Australia.

出版信息

Front Plant Sci. 2023 Dec 4;14:1278185. doi: 10.3389/fpls.2023.1278185. eCollection 2023.

Abstract

Contamination of the soil with non-essential metals and metalloids is a serious problem in many regions of the world. These non-essential metals and metalloids are toxic to all organisms impacting crop yields and human health. Crop plants exposed to high concentrations of these metals leads to perturbed mineral homeostasis, decreased photosynthesis efficiency, inhibited cell division, oxidative stress, genotoxic effects and subsequently hampered growth. Plants can activate epigenetic and epitranscriptomic mechanisms to maintain cellular and organism homeostasis. Epigenetic modifications include changes in the patterns of cytosine and adenine DNA base modifications, changes in cellular non-coding RNAs, and remodeling histone variants and covalent histone tail modifications. Some of these epigenetic changes have been shown to be long-lasting and may therefore contribute to stress memory and modulated stress tolerance in the progeny. In the emerging field of epitranscriptomics, defined as chemical, covalent modifications of ribonucleotides in cellular transcripts, epitranscriptomic modifications are postulated as more rapid modulators of gene expression. Although significant progress has been made in understanding the plant's epigenetic changes in response to biotic and abiotic stresses, a comprehensive review of the plant's epigenetic responses to metals is lacking. While the role of epitranscriptomics during plant developmental processes and stress responses are emerging, epitranscriptomic modifications in response to metals has not been reviewed. This article describes the impact of non-essential metals and metalloids (Cd, Pb, Hg, Al and As) on global and site-specific DNA methylation, histone tail modifications and epitranscriptomic modifications in plants.

摘要

土壤被非必需金属和类金属污染是世界上许多地区面临的一个严重问题。这些非必需金属和类金属对所有生物体都有毒性,会影响作物产量和人类健康。暴露于高浓度这些金属的作物会导致矿物质稳态紊乱、光合作用效率降低、细胞分裂受抑制、氧化应激、基因毒性效应,进而阻碍生长。植物可以激活表观遗传和表转录组机制来维持细胞和生物体的稳态。表观遗传修饰包括胞嘧啶和腺嘌呤DNA碱基修饰模式的变化、细胞非编码RNA的变化,以及组蛋白变体的重塑和组蛋白尾部共价修饰。其中一些表观遗传变化已被证明是持久的,因此可能有助于应激记忆并调节后代的应激耐受性。在新兴的表转录组学领域,其被定义为细胞转录本中核糖核苷酸的化学共价修饰,表转录组修饰被认为是基因表达的更快速调节因子。尽管在理解植物对生物和非生物胁迫的表观遗传变化方面已经取得了重大进展,但仍缺乏对植物对金属的表观遗传反应的全面综述。虽然表转录组学在植物发育过程和应激反应中的作用正在显现,但尚未对植物对金属的表转录组修饰进行综述。本文描述了非必需金属和类金属(镉、铅、汞、铝和砷)对植物全局和位点特异性DNA甲基化、组蛋白尾部修饰和表转录组修饰的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92b0/10726048/42cfeceaa125/fpls-14-1278185-g001.jpg

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