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The Role of Silicon in Higher Plants under Salinity and Drought Stress

机译:盐分和干旱胁迫下硅在高等植物中的作用

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摘要

Although deemed a “non-essential” mineral nutrient, silicon (Si) is clearly beneficial to plant growth and development, particularly under stress conditions, including salinity and drought. Here, we review recent research on the physiological, biochemical, and molecular mechanisms underlying Si-induced alleviation of osmotic and ionic stresses associated with salinity and drought. We distinguish between changes observed in the apoplast (i.e., suberization, lignification, and silicification of the extracellular matrix; transpirational bypass flow of solutes and water), and those of the symplast (i.e., transmembrane transport of solutes and water; gene expression; oxidative stress; metabolism), and discuss these features in the context of Si biogeochemistry and bioavailability in agricultural soils, evaluating the prospect of using Si fertilization to increase crop yield and stress tolerance under salinity and drought conditions.
机译:尽管被认为是“非必需”的矿物质营养素,但硅(Si)显然对植物的生长和发育有益,特别是在盐分​​和干旱等胁迫条件下。在这里,我们回顾了最新的生理,生化和分子机制的研究,这些机制是硅诱导的与盐分和干旱有关的渗透压和离子胁迫缓解的基础。我们区分在质外体中观察到的变化(即细胞外基质的干化,木质化和硅化;溶质和水的蒸腾旁路流动)和共生体中的变化(即溶质和水的跨膜运输;基因表达;氧化性)应力;新陈代谢),并在农业土壤中的Si生物地球化学和生物利用度的背景下讨论这些特征,评估在盐分和干旱条件下使用Si施肥来提高作物产量和胁迫耐受性的前景。

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