植物对盐度和高辐照胁迫的生理、分子和代谢适应。

IF 5.4 2区 生物学 Q1 PLANT SCIENCES
Segarra-Medina Clara, Gómez-Cadenas Aurelio, Zandalinas Sara
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引用次数: 0

摘要

预计全球变暖将推动气候变化,加剧极端天气事件,并由于环境因素的频率和严重性增加而加剧植物的应激条件。在这些压力中,盐度和高辐照度的相互作用尤为重要,因为它对作物生产力、食品质量和全球总体粮食安全构成重大威胁。本文综述了各种植物对盐度(S)、高辐照(HL)及其联合胁迫(S + HL)的生理、分子和代谢反应,重点介绍了植物缓解这些不利条件的适应机制。本研究整合了计算机数据,重点研究基因表达谱和使用基因本体(GO)术语的功能分类,并分析转录因子(TF)家族,如MYB, WRKY和bHLH。除了基因表达数据,我们还分析了暴露于S、HL和S + HL的不同物种的生长、发育和代谢特征。这些发现指出了适应机制,包括基因表达模式、代谢途径和植物激素谱的重新配置,这对适应气候变化的作物的发展至关重要,展示了它们的潜力。本文综述为进一步研究植物的多逆境适应策略提供了框架。此外,还概述了通过这些见解提高作物抗灾能力的重要性,有助于在快速变化的气候条件下开发可持续农业的创新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological, molecular, and metabolic adaptations of plants to combined salinity and high irradiance stress.

Global warming is expected to drive climate change, intensifying extreme weather events and aggravating stress conditions for plants due to the heightened frequency and severity of environmental factors. Among these stresses, the interplay of salinity and high irradiance is particularly critical, as it poses significant threats to crop productivity, food quality, and overall global food security. This review provides a comprehensive analysis of the physiological, molecular, and metabolic responses of various plant species to salinity (S), high irradiance (HL), and their combined stress (S + HL), highlighting the adaptative mechanisms plants employ to mitigate these adverse conditions. This study integrates in silico data, focusing on gene expression profiles and functional classification using Gene Ontology (GO) terms and analysis of transcription factor (TF) families such as MYB, WRKY and bHLH. Alongside gene expression data, we incorporated analyses of growth, development, and metabolism profiles across different species exposed to S, HL and S + HL. The findings point to adaptive mechanisms crucial for resilience, including reconfigurations in gene expression patterns, metabolic pathways and phytohormone profiles, demonstrating their potential in the development of climate-resilient crops. This review offers a framework for further research into multi-stress adaptation strategies. In addition, the importance of advancing crop resilience through these insights, contributing to the development of innovative approaches for sustainable agriculture in a rapidly changing climate, is outlined.

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来源期刊
Physiologia plantarum
Physiologia plantarum 生物-植物科学
CiteScore
11.00
自引率
3.10%
发文量
224
审稿时长
3.9 months
期刊介绍: Physiologia Plantarum is an international journal committed to publishing the best full-length original research papers that advance our understanding of primary mechanisms of plant development, growth and productivity as well as plant interactions with the biotic and abiotic environment. All organisational levels of experimental plant biology – from molecular and cell biology, biochemistry and biophysics to ecophysiology and global change biology – fall within the scope of the journal. The content is distributed between 5 main subject areas supervised by Subject Editors specialised in the respective domain: (1) biochemistry and metabolism, (2) ecophysiology, stress and adaptation, (3) uptake, transport and assimilation, (4) development, growth and differentiation, (5) photobiology and photosynthesis.
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