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核糖体蛋白在非生物和生物胁迫中的作用

Implication of ribosomal protein in abiotic and biotic stress.

作者信息

Fakih Zainab, Germain Hugo

机构信息

Department of Chemistry, Biochemistry and Physics and Groupe de Recherche en Biologie Végétale, Université du Québec À Trois-Rivières, Trois-Rivières, Québec, G9A 5H9, Canada.

出版信息

Planta. 2025 Mar 11;261(4):85. doi: 10.1007/s00425-025-04665-6.

Abstract

This review article explores the intricate role, and regulation of ribosomal protein in response to stress, particularly emphasizing their pivotal role to ameliorate abiotic and biotic stress conditions in crop plants. Plants must coordinate ribosomes production to balance cellular protein synthesis in response to environmental variations and pathogens invasion. Over the past decade, research has revealed ribosome subgroups respond to adverse conditions, suggesting that this tight coordination may be grounded in the induction of ribosome variants resulting in differential translation outcomes. Furthermore, an increasing snumber of studies on plant ribosomes have made it possible to explore the stress-regulated expression pattern of ribosomal protein large subunit (RPL) and ribosomal protein small subunit (RPS) genes. In this perspective, we reviewed the literature linking ribosome heterogeneity to plants' abiotic and biotic stress responses to offer an overview on the expression and biological function of ribosomal components including specialized translation of individual transcripts and its implications for the regulation and expression of important gene regulatory networks, along with phenotypic analysis in ribosomal gene mutations in physiologic and pathologic processes. We also highlight recent advances in understanding the molecular mechanisms behind the transcriptional regulation of ribosomal genes linked to stress events. This review may serve as the foundation of novel strategies to customize cultivars tolerant to challenging environments without the yield penalty.

摘要

这篇综述文章探讨了核糖体蛋白在应对胁迫时的复杂作用及其调控机制,特别强调了它们在改善作物非生物和生物胁迫条件方面的关键作用。植物必须协调核糖体的产生,以平衡细胞内蛋白质合成,从而应对环境变化和病原体入侵。在过去十年中,研究表明核糖体亚群会对不利条件做出反应,这表明这种紧密协调可能基于核糖体变体的诱导,从而导致不同的翻译结果。此外,越来越多关于植物核糖体的研究使得探索核糖体蛋白大亚基(RPL)和核糖体蛋白小亚基(RPS)基因的胁迫调节表达模式成为可能。从这个角度出发,我们回顾了将核糖体异质性与植物非生物和生物胁迫反应联系起来的文献,以概述核糖体组分的表达和生物学功能,包括单个转录本的特异性翻译及其对重要基因调控网络的调控和表达的影响,以及生理和病理过程中核糖体基因突变的表型分析。我们还强调了在理解与胁迫事件相关的核糖体基因转录调控背后的分子机制方面的最新进展。这篇综述可为定制耐逆境且不减产的品种的新策略奠定基础。

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