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Silicon Alleviates Drought Stress of Rice Plants by Improving Plant Water Status, Photosynthesis and Mineral Nutrient Absorption

机译:硅通过改善植物的水分状况,光合作用和矿质养分吸收来缓解水稻的干旱胁迫

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Drought is a major constraint for rice production in the rainfed lowlands in China. Silicon (Si) has been verified to play an important role in enhancing plant resistance to environmental stress. Two near-isogenic lines of rice (Oryza sativa L.), w-14 (drought susceptible) and w-20 (drought resistant), were selected to study the effects of exogenous Si application on the physiological traits and nutritional status of rice under drought stress. In wet conditions, Si supply had no effects on growth and physiological parameters of rice plants. Drought stress was found to reduce dry weight, root traits, water potential, photosynthetic parameters, basal quantum yield (F v/F 0), and maximum quantum efficiency of PSII photochemistry (F v/F m) in rice plants, while Si application significantly increased photosynthetic rate (Pr), transpiration rate (Tr), F v/F 0, and F v/F m of rice plants under drought stress. In addition, water stress increased K, Na, Ca, Mg, Fe content of rice plants, but Si treatment significantly reduced these nutrient level. These results suggested that silicon application was useful to increase drought resistance of rice through the enhancement of photochemical efficiency and adjustment of the mineral nutrient absorption in rice plants.
机译:干旱是中国雨养低地水稻生产的主要制约因素。硅(Si)已被证明在增强植物对环境压力的抵抗力中起重要作用。选择水稻的两个近等基因系w-14(对干旱敏感)和w-20(抗干旱),研究外源施硅对水稻在不同生理条件下的营养特性和营养状况的影响。干旱压力。在潮湿条件下,硅的供应对水稻植物的生长和生理参数没有影响。发现干旱胁迫降低了PSII光化学的干重,根系特征,水势,光合参数,基础量子产率(F v / F 0 )和最大量子效率(F v / F m ),而施用硅显着提高了光合速率(Pr),蒸腾速率(Tr),F v / F 0 和F v / F m 干旱胁迫下的水稻。此外,水分胁迫增加了水稻植株的钾,钠,钙,镁,铁含量,但是硅处理显着降低了这些营养水平。这些结果表明硅的施用通过提高光化学效率和调节水稻植物中的矿质养分吸收而有助于提高水稻的抗旱性。

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