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超越转录因子:非生物胁迫下影响大豆基因表达的更多调控层次

Beyond transcription factors: more regulatory layers affecting soybean gene expression under abiotic stress.

作者信息

Cadavid Isabel Cristina, Balbinott Natalia, Margis Rogerio

机构信息

Universidade Federal do Rio Grande do Sul, Centro de Biotecnologia, Programa de Pós-graduação em Biologia Celular e Molecular (PPGBCM), Porto Alegre, Brazil.

Universidade Federal do Rio Grande do Sul, Departamento de Genética, Programa de Pós-graduação em Genética e Biologia Molecular (PPGBM), Porto Alegre, Brazil.

出版信息

Genet Mol Biol. 2023 Jan 23;46(1 Suppl 1):e20220166. doi: 10.1590/1678-4685-GMB-2022-0166. eCollection 2023.

Abstract

Abiotic stresses such as nutritional imbalance, salt, light intensity, and high and low temperatures negatively affect plant growth and development. Through the course of evolution, plants developed multiple mechanisms to cope with environmental variations, such as physiological, morphological, and molecular adaptations. Epigenetic regulation, transcription factor activity, and post-transcriptional regulation operated by RNA molecules are mechanisms associated with gene expression regulation under stress. Epigenetic regulation, including histone and DNA covalent modifications, triggers chromatin remodeling and changes the accessibility of transcription machinery leading to alterations in gene activity and plant homeostasis responses. Soybean is a legume widely produced and whose productivity is deeply affected by abiotic stresses. Many studies explored how soybean faces stress to identify key elements and improve productivity through breeding and genetic engineering. This review summarizes recent progress in soybean gene expression regulation through epigenetic modifications and circRNAs pathways, and points out the knowledge gaps that are important to study by the scientific community. It focuses on epigenetic factors participating in soybean abiotic stress responses, and chromatin modifications in response to stressful environments and draws attention to the regulatory potential of circular RNA in post-transcriptional processing.

摘要

非生物胁迫,如营养失衡、盐分、光照强度以及高温和低温,会对植物的生长和发育产生负面影响。在进化过程中,植物形成了多种应对环境变化的机制,如生理、形态和分子适应。由RNA分子介导的表观遗传调控、转录因子活性和转录后调控是与胁迫下基因表达调控相关的机制。表观遗传调控,包括组蛋白和DNA共价修饰,引发染色质重塑并改变转录机器的可及性,从而导致基因活性和植物稳态反应的改变。大豆是一种广泛种植的豆科植物,其生产力深受非生物胁迫的影响。许多研究探讨了大豆如何应对胁迫,以确定关键因素,并通过育种和基因工程提高生产力。本综述总结了大豆通过表观遗传修饰和circRNA途径在基因表达调控方面的最新进展,并指出了科学界有待研究的重要知识空白。它重点关注参与大豆非生物胁迫反应的表观遗传因素,以及对胁迫环境的染色质修饰,并提请注意环状RNA在转录后加工中的调控潜力。

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