首页> 外文期刊>Scientia horticulturae >Potassium Potassium humate improves physio-biochemical attributes, defense systems activities and water-use efficiencies of eggplant under partial root-zone drying
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Potassium Potassium humate improves physio-biochemical attributes, defense systems activities and water-use efficiencies of eggplant under partial root-zone drying

机译:耐钾肥浴改善了局部根带干燥下茄子的物理生化属性,国防系统活动和水用效率

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Partial root-zone drying (PRD) applied in an alternate strategy (PRDalt) can regulate plant physiological and antioxidative defense system responses, and it is considered as an irrigation water-saving method. The current study was carried out using pot experiments to elucidate the potential role of potassium humate (KH) in integration with PRDalt in regulating eggplant physiological and defense systems responses, and irrigation water saving. PRDalt significantly reduced the plant growth and yield, leaf photosynthetic gas exchange, leaf relative water content (RWC) and membrane stability index (MSI), while significantly increased leaf and root contents of malondialdehyde (MDA), hydrogen peroxide (H2O2), and leaf and root activities of enzymatic and non-enzymatic antioxidants compared to Full irrigation (control; FI). Integrative application of PRDalt + KH increased water-use efficiencies; WUEfw, (calculated as g fruits L-1 applied water) by 97.9% and WUEpt (calculated by dividing the net photosynthetic rate by transpiration rate) by 20.3% compared to the controls. It also further increased leaf and root activities of enzymatic and non-enzymatic antioxidants, while controlled the contents of MDA and H2O2, and maintained plant growth and yield, leaf photosynthetic gas exchange, RWC and MSI at the same levels in plants of FI. Results of this study recommend using the integrative strategy of PRDalt + KH to confer the same eggplant growth and yield of the FI control and save about 50% of irrigation water.
机译:在替代策略(PRDALT)中施加的部分根区干燥(PRD)可以调节植物生理和抗氧化防御系统的反应,并且被认为是一种灌溉节水方法。目前的研究是使用盆栽实验进行,以阐明潮湿(KH)与PRDALT在调节茄子生理和防御系统反应中的潜在作用,以及灌溉节水。 PRDALL显着降低了植物生长和产量,叶片光合作因,叶相对含水量(RWC)和膜稳定性指数(MSI),而丙醛(MDA),过氧化氢(H2O2)和叶片显着增加与完全灌溉相比,酶促和非酶促抗氧化剂的根系活性(对照; FI)。普拉特+ kH的综合应用增加了吸水效率; Wuefw,(以G水果L-1施用水计算)达97.9%,并用对照相比,通过将净光合速率除以蒸腾率的净光合速率来计算。它还进一步增加了酶和非酶促抗氧化剂的叶片和根系活性,同时控制MDA和H2O2的含量,并在FI的植物中维持植物生长和产量,叶片光合作用气体交换,RWC和MSI。该研究的结果建议使用PRDALT + KH的整合策略赋予相同的茄子生长和体积的产量,并节省约50%的灌溉水。

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