首页> 外文会议>International Symposium on Managing Soils for Food Security and Climate Change Adaptation and Mitigation >Improving Yield and Water Use Efficiency of Wheat (Triticum aestivum L.) by Regulating Plant-Available Water during Crop Development under Semi-arid Conditions in Pakistan
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Improving Yield and Water Use Efficiency of Wheat (Triticum aestivum L.) by Regulating Plant-Available Water during Crop Development under Semi-arid Conditions in Pakistan

机译:通过在巴基斯坦半干旱条件下调节植物可用水,提高小麦(Triticum Aestivum L.)的产量和水利用效率

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Scarcity of irrigation water in Pakistan warrants adoption of appropriate practices for maximizing crop water use efficiency that at present is far lower compared with other countries. The objective of this research was to enhance water use efficiency (WUE) and optimize irrigation scheduling for optimal wheat yield under water scarce con-dons. Field experiments with different irrigation regimes: rain-fed, optimal irrigation and regulated deficit irrigation at different growth stages were conducted on adeep loam soil for four crop seasons (2008-20 1 2). The results showed that regulated deficit irrigation at less sensitive crop stage(s) could allow up to 25 percent water saving without compromising economic yield. AquaCrop simulations were quite reliable for predictions of crop development (canopy cover and iii-season biomass), crop yield, soil water dynamics and thus water productivity under different irrigation regimes. Since water saving through deficit irrigation would allow irrigation of additional crop area, the AquaCrop model can be a useful tool for assessing crop requirements and devising irrigation strategies to enhance water productivity under different scenarios.
机译:巴基斯坦灌溉用水的稀缺令临时采用适当的做法来最大限度地提高作物用水效率,与其他国家相比,目前的效率远远低得多。本研究的目的是提高水利用效率(WUE),并优化水资源稀缺在水稀缺下的最佳小麦产量灌溉调度。不同灌溉制度的现场实验:在四个作物季节的Adeep Loam土壤中进行雨喂养,最优灌溉和调节缺陷灌溉,用于四个作物季节(2008-201 2)。结果表明,敏感较低的作物阶段的调节缺陷灌溉可能允许高达25%的节水,而不会影响经济产量。随着不同灌溉制度下的作物发展预测,作物产量,土壤水动力学以及水生产率,Aquacrop模拟是非常可靠的。由于通过赤字灌溉的节水将允许灌溉额外的作物区域,因此Aquacrop模型可以是评估作物要求和设计灌溉策略的有用工具,以提高不同情景下的水生产率。

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