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干旱胁迫对植物的影响及减轻其不利影响的不同方法。

Drought Stress Impacts on Plants and Different Approaches to Alleviate Its Adverse Effects.

作者信息

Seleiman Mahmoud F, Al-Suhaibani Nasser, Ali Nawab, Akmal Mohammad, Alotaibi Majed, Refay Yahya, Dindaroglu Turgay, Abdul-Wajid Hafiz Haleem, Battaglia Martin Leonardo

机构信息

Plant Production Department, College of Food and Agriculture Sciences, King Saud University, P.O. Box 2460, Riyadh 11451, Saudi Arabia.

Department of Crop Sciences, Faculty of Agriculture, Menoufia University, Shibin El-kom 32514, Egypt.

出版信息

Plants (Basel). 2021 Jan 28;10(2):259. doi: 10.3390/plants10020259.

Abstract

Drought stress, being the inevitable factor that exists in various environments without recognizing borders and no clear warning thereby hampering plant biomass production, quality, and energy. It is the key important environmental stress that occurs due to temperature dynamics, light intensity, and low rainfall. Despite this, its cumulative, not obvious impact and multidimensional nature severely affects the plant morphological, physiological, biochemical and molecular attributes with adverse impact on photosynthetic capacity. Coping with water scarcity, plants evolve various complex resistance and adaptation mechanisms including physiological and biochemical responses, which differ with species level. The sophisticated adaptation mechanisms and regularity network that improves the water stress tolerance and adaptation in plants are briefly discussed. Growth pattern and structural dynamics, reduction in transpiration loss through altering stomatal conductance and distribution, leaf rolling, root to shoot ratio dynamics, root length increment, accumulation of compatible solutes, enhancement in transpiration efficiency, osmotic and hormonal regulation, and delayed senescence are the strategies that are adopted by plants under water deficit. Approaches for drought stress alleviations are breeding strategies, molecular and genomics perspectives with special emphasis on the omics technology alteration i.e., metabolomics, proteomics, genomics, transcriptomics, glyomics and phenomics that improve the stress tolerance in plants. For drought stress induction, seed priming, growth hormones, osmoprotectants, silicon (Si), selenium (Se) and potassium application are worth using under drought stress conditions in plants. In addition, drought adaptation through microbes, hydrogel, nanoparticles applications and metabolic engineering techniques that regulate the antioxidant enzymes activity for adaptation to drought stress in plants, enhancing plant tolerance through maintenance in cell homeostasis and ameliorates the adverse effects of water stress are of great potential in agriculture.

摘要

干旱胁迫是各种环境中不可避免的因素,它不受地域限制且没有明显预警,从而影响植物生物量的产生、质量和能量。它是由于温度变化、光照强度和低降雨量而产生的关键环境胁迫。尽管如此,其累积的、不明显的影响以及多维度性质严重影响植物的形态、生理、生化和分子特性,对光合能力产生不利影响。为应对缺水问题,植物进化出各种复杂的抗性和适应机制,包括生理和生化反应,这些反应因物种而异。本文简要讨论了提高植物水分胁迫耐受性和适应性的复杂适应机制和调控网络。生长模式和结构动态、通过改变气孔导度和分布减少蒸腾损失、叶片卷曲、根冠比动态、根长增加、相容性溶质积累、蒸腾效率提高、渗透和激素调节以及延缓衰老,是植物在水分亏缺时采取的策略。缓解干旱胁迫的方法包括育种策略、分子和基因组学方法,特别强调组学技术的改变,即代谢组学、蛋白质组学、基因组学、转录组学、糖组学和表型组学,以提高植物的胁迫耐受性。对于干旱胁迫诱导,在植物干旱胁迫条件下,种子引发、生长激素、渗透保护剂、硅(Si)、硒(Se)和钾的施用值得采用。此外,通过微生物、水凝胶、纳米颗粒应用和代谢工程技术进行干旱适应,调节抗氧化酶活性以适应植物干旱胁迫,通过维持细胞稳态增强植物耐受性并减轻水分胁迫的不利影响,在农业中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3acf/7911879/44b0e0a3da5c/plants-10-00259-g001.jpg

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