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植物镉胁迫的表观遗传学研究进展

Advances in epigenetic studies of plant cadmium stress.

作者信息

Gao Yonggang, Wang TZufeng, Zhao Cheng

机构信息

Guangdong Laboratory of Lingnan Modern Agriculture, Key Laboratory of Synthetic Biology, Ministry of Agriculture and Rural Affairs, Agricultural Genomics Institute, Chinese Academy of Agricultural Sciences, Shenzhen, China.

Institute of Agricultural Genomics, Center for Synthetic, Biology, Chinese Academy of Agricultural Sciences Agricultural Genomes Institute, Shenzhen, China.

出版信息

Front Plant Sci. 2025 May 30;15:1489155. doi: 10.3389/fpls.2024.1489155. eCollection 2024.

Abstract

As the global population continues to grow, achieving ecological sustainability and ensuring food production have become urgent challenges. Among various environmental stresses, heavy metals, particularly cadmium (Cd), pose a significant threat to plant growth and development. Breeding cadmium-resistant crop varieties that minimize Cd accumulation is therefore crucial for promoting sustainable agriculture. In response to Cd stress, plants undergo a series of regulatory mechanisms, including DNA methylation, chromatin remodeling, and histone acetylation, to mitigate cellular damage. Understanding the epigenetic responses of plants to cadmium stress is a key research area that holds substantial significance for both agriculture and environmental biology. This article reviews the current research on plant responses to cadmium stress and the underlying mechanisms of their epigenetic responses, aiming to provide theoretical insights for analyzing the epigenetic mechanisms of heavy metal stress in major crops. We can leverage genomics, single-cell sequencing, stereo-seq, and other advanced technologies in conjunction with epigenomics, plant genetics and molecular biology techniques to conduct comprehensive and in-depth studies on the epigenetic changes that occur in plants following Cd exposure. Systematically elucidating the molecular mechanisms by which plants perceive and respond to Cd stress will aid in the development of more effective bioremediation strategies for heavy metal-contaminated soils and facilitate.

摘要

随着全球人口持续增长,实现生态可持续性和确保粮食生产已成为紧迫的挑战。在各种环境胁迫中,重金属,尤其是镉(Cd),对植物的生长发育构成重大威胁。因此,培育能最大限度减少镉积累的抗镉作物品种对于促进可持续农业至关重要。为应对镉胁迫,植物会经历一系列调节机制,包括DNA甲基化、染色质重塑和组蛋白乙酰化,以减轻细胞损伤。了解植物对镉胁迫的表观遗传反应是一个关键研究领域,对农业和环境生物学都具有重要意义。本文综述了目前关于植物对镉胁迫的反应及其表观遗传反应潜在机制的研究,旨在为分析主要作物重金属胁迫的表观遗传机制提供理论见解。我们可以利用基因组学、单细胞测序、立体测序等先进技术,结合表观基因组学、植物遗传学和分子生物学技术,对植物在接触镉后发生的表观遗传变化进行全面深入的研究。系统地阐明植物感知和应对镉胁迫的分子机制将有助于开发更有效的重金属污染土壤生物修复策略,并促进…… (原文最后似乎不完整)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5814/12162622/2d2aadb7831a/fpls-15-1489155-g001.jpg

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