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Impact of Partial Root Drying and Soil Mulching on Squash Yield and Water Use Efficiency in Arid

机译:部分根干燥和土壤覆盖对干旱壁球产量和水利用效率的影响

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摘要

Practical and sustainable water management systems are needed in arid regions due to water shortages and climate change. Therefore, an experiment was initiated in winter (WS) and spring (SS), to investigate integrating deficit irrigation, associated with partial root drying (PRD) and soil mulching, under subsurface drip irrigation on squash yield, fruit quality, and irrigation water use efficiency (IWUE). Two mulching treatments, transparent plastic mulch (WM) and black plastic mulch (BM), were tested, and a treatment without mulch (NM) was used as a control. Three levels of irrigation were examined in a split-plot design with three replications: 100% of crop evapotranspiration (ETc), representing full irrigation (FI), 70% of ETc (PRD70), and 50% of ETc (PRD50). There was a higher squash yield and lower IWUE in SS than WS. The highest squash yields were recorded for PDR70 (82.53 Mg ha−1) and FI (80.62 Mg ha−1). The highest IWUE was obtained under PRD50. Plastic mulch significantly increased the squash yield (34%) and IWUE (46%) and enhanced stomatal conductance, photosynthesis, transpiration, leaf chlorophyll fluorescence, and leaf chlorophyll contents under PRD plants. These results indicate that in arid and semi-arid regions, soil mulch with deficit PRD could be used as a water-saving strategy without reducing yields.
机译:由于水资源短缺和气候变化,干旱地区需要实用和可持续的水管理系统。因此,在冬季(WS)和Spring(SS)中启动了实验,以研究整合缺陷灌溉,与部分根干燥(PRD)和土壤覆盖有关,在地下滴灌灌注下进行挤压率,水果质量和灌溉用水效率(IWUE)。测试了两个覆盖的处理,透明塑料覆盖(WM)和黑色塑料覆盖物(BM),使用没有覆盖物(NM)的处理作为对照。在分裂图设计中检查了三个灌溉水平:100%的作物蒸散(ETC),代表完整的灌溉(FI),70%(PRD70)和50%(PRD50)。 SS中有一个更高的南瓜产量和低于WS的IWUE。 PDR70(82.53mg HA-1)和FI(80.62mg HA-1)记录了最高的南瓜产率。在PRD50下获得最高的IWUE。塑料覆盖率显着提高了PRD植物下增强了南瓜产率(34%)和IWUE(46%)(46%)和增强的气孔导电,光合作用,蒸腾,叶叶叶荧光和叶片叶绿素含量。这些结果表明,在干旱和半干旱地区,具有赤字PRD的土壤覆盖物可作为节水策略,而不会降低产量。

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