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General mechanisms of drought response and their application in drought resistance improvement in plants

机译:干旱反应的一般机理及其在植物抗旱性改良中的应用

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Plants often encounter unfavorable environmental conditions because of their sessile lifestyle. These adverse factors greatly affect the geographic distribution of plants, as well as their growth and productivity. Drought stress is one of the premier limitations to global agricultural production due to the complexity of the water-limiting environment and changing climate. Plants have evolved a series of mechanisms at the morphological, physiological, biochemical, cellular, and molecular levels to overcome water deficit or drought stress conditions. The drought resistance of plants can be divided into four basic types-drought avoidance, drought tolerance, drought escape, and drought recovery. Various drought-related traits, including root traits, leaf traits, osmotic adjustment capabilities, water potential, ABA content, and stability of the cell membrane, have been used as indicators to evaluate the drought resistance of plants. In the last decade, scientists have investigated the genetic and molecular mechanisms of drought resistance to enhance the drought resistance of various crops, and significant progress has been made with regard to drought avoidance and drought tolerance. With increasing knowledge to comprehensively decipher the complicated mechanisms of drought resistance in model plants, it still remains an enormous challenge to develop water-saving and drought-resistant crops to cope with the water shortage and increasing demand for food production in the future.
机译:由于植物的固执生活方式,它们通常会遇到不利的环境条件。这些不利因素极大地影响植物的地理分布及其生长和生产力。由于水限制环境的复杂性和气候变化,干旱压力是全球农业生产的主要限制之一。植物已经在形态,生理,生化,细胞和分子水平上进化出一系列机制来克服缺水或干旱胁迫条件。植物的抗旱性可以分为四种基本类型:避免干旱,耐旱,逃避干旱和恢复干旱。各种与干旱有关的性状,包括根系性状,叶片性状,渗透调节能力,水势,ABA含量和细胞膜的稳定性,已用作评价植物抗旱性的指标。在过去的十年中,科学家们研究了抗旱性的遗传和分子机制,以增强各种作物的抗旱性,在避免干旱和抗旱性方面已经取得了重大进展。随着越来越多的知识全面地理解模型植物中复杂的抗旱机制,开发节水和抗旱作物以应对缺水和未来粮食生产需求增加仍然是巨大的挑战。

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