植物抗旱性:重要发育阶段分子、生化和生理反应的相互作用

M. Ç. Oğuz, Murat Aycan, Ezgi Oğuz, Irem Poyraz, M. Yıldız
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引用次数: 26

摘要

干旱是限制全球作物生产力的一个重要非生物胁迫因素,其影响随着气候变化而加剧。无论植物生长期如何,干旱在植物发育的每个阶段都会对植物产生致命的减产影响。与许多环境胁迫源一样,干旱暴露的植物会引发一系列分子、生化和生理反应,以克服干旱胁迫的影响。目前,研究人员正试图通过不同的方法来确定植物干旱胁迫反应的复杂功能。植物在某些关键阶段对干旱胁迫更敏感,如发芽、幼苗形成、开花、施肥和籽粒形成期。植物通过耐受机制的活性,在营养发育期减少干旱胁迫的影响方面取得了很高的成功。另一方面,生育期的干旱胁迫会造成不可逆转的产量损失。本文综述了植物耐旱性的分子、生化和生理机制的进展,以及不同发育阶段田间作物对干旱胁迫的反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Drought Stress Tolerance in Plants: Interplay of Molecular, Biochemical and Physiological Responses in Important Development Stages
Drought is an important abiotic stress factor limiting crop productivity worldwide and its impact is increasing with climate change. Regardless of the plant growth period, drought has a deadly and yield-reducing effect on the plant at every stage of development. As with many environmental stressors, drought-exposed plants trigger a series of molecular, biochemical, and physiological responses to overcome the effect of drought stress. Currently, researchers are trying to determine the complex functioning of drought stress response in plants with different approaches. Plants are more sensitive to drought stress during certain critical stages like germination, seedling formation, flowering, fertilization, and grain formation periods. Plants have high success in reducing the effects of drought stress in vegetative development periods with the activity of tolerance mechanisms. On the other hand, drought stress during the generative period can cause irreversible losses in yield. This review focuses on the progression of molecular, biochemical, and physiological mechanisms involved in the drought stress tolerance in plants and the responses of field crops to drought stress at different development stages.
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