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Deficit irrigation and planting patterns strategies to improve maize yield and water productivity at different plant densities in semi-arid regions

机译:半干旱地区不同种植密度下的亏亏灌溉和种植模式策略可提高玉米产量和水分生产率

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摘要

Field research was done in two consecutive years to optimize deficit irrigation under different crop densities (low, medium, and high) using the ridge and furrow rainfall harvesting (RFRH) system. We demonstrate that applying deficit irrigation (375 m3 ha−1) at the flowering stage of maize grown at medium density (M: 75000 plant ha−1) under the RFRH system (MIF) can improve soil water storage (0–200 cm) at the bell, filling and flowering stages. MIF increased biomass by 10% and grain yield by 21%, thereby achieving a 17% increase in water use efficiency (WUE) and a 22% increase in precipitation use efficiency (PUE) compared with conventional flat planting (CKM). MIF also improved irrigation water use efficiency (IWUE) (9%) and irrigation water productivity (IWP) (46%) compared with no-irrigation under the RFRH system (MI0). We observed that applying deficit irrigation (750 m3 ha−1) at the bell and flowering stage (IBF) had positive effects on dry matter, leaf area, and evapotranspiration, but there were no significant increases in IWUE, IWP, WUE, biomass and grain yield compared with maize grown under IF at low, medium and high plant densities. The average net profit over the two years was 34% higher for MIF compared with the CKM treatment.
机译:连续两年进行田间研究,以利用垄沟降雨收集(RFRH)系统优化不同密度(低,中和高)下的亏缺灌溉。我们证明了在中等密度(M:75000株植物ha -1 种植的玉米)的开花期应用亏缺灌溉(375 m 3 ha -1 ) / sup>)在RFRH系统(MIF)下可以改善钟,灌浆和开花期的土壤水分存储(0–200 cm)。与传统的平板种植(CKM)相比,MIF使生物量增加了10%,谷物产量增加了21%,从而使水分利用效率(WUE)提高了17%,降水利用效率(PUE)提高了22%。与RFRH系统(MI0)下的非灌溉相比,MIF还提高了灌溉用水效率(IWUE)(9%)和灌溉水生产率(IWP)(46%)。我们观察到在钟花期和开花期(IBF)进行亏缺灌溉(750 m 3 ha -1 )对干物质,叶面积和蒸散量有积极影响,但与中,低,高密度下IF种植的玉米相比,IWUE,IWP,WUE,生物量和籽粒产量均没有显着增加。与CKM处理相比,MIF两年的平均净利润高出34%。

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