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Drought Tolerance and Ion Accumulation of Rice Following Application of Additional Potassium Fertilizer

机译:增施钾肥后水稻的耐旱性和离子积累

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Five levels of water stress cycle (control flooded, control saturated, 5, 10, and 15 days of irrigation interval) and three potassium fertilization levels [80 kg, 120 kg, and kg 160 dipotassium oxide (K2O) ha(-1)] were exposed to investigate the influence of potassium fertilizer for minimizing water stress effect and maximizing productivity of rice. Different phyto-physiological parameters as well as uptake of major nutrient elements [nitrogen (N), phosphorus (P), potassium (K), calcium (Ca), magnesium (Mg), iron (Fe)] were examined. It was observed that rice yield, harvest index, and other physiological parameters reduces with increasing duration of water stress while application of additional potassium fertilizer has progressive impact on those parameters. From our observation, 10 days of watering cycle with potassium fertilization at 120 kg K2O ha(-1) produces highest grain yield and harvest index. Uptake of major nutrient elements was also enhanced by potassium fertilizer. Therefore, it can be stated that additional potassium fertilizer application could be useful to mitigate water stress effect in rice.
机译:五个水平的水分胁迫周期(控制淹水,控制饱和,5、10和15天的灌溉间隔)和三个钾肥水平[80 kg,120 kg和160 kg二氧化钾(K2O)ha(-1)]研究了钾肥对减少水分胁迫效应和最大化水稻产量的影响。检查了不同的植物生理参数以及主要营养元素的吸收[氮(N),磷(P),钾(K),钙(Ca),镁(Mg),铁(Fe)]。据观察,随着水分胁迫持续时间的增加,水稻的产量,收获指数和其他生理参数会降低,而施用额外的钾肥会对这些参数产生逐步的影响。根据我们的观察,在120 kg K2O ha(-1)下施钾10天的浇水周期产生了最高的谷物产量和收获指数。钾肥还增加了对主要营养元素的吸收。因此,可以说额外的钾肥施用可以减轻水稻的水分胁迫效应。

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