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Effect of different furrow and plant spacing on yield and water use efficiency of maize

机译:不同垄沟和株距对玉米产量和水分利用效率的影响

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摘要

In southern zone of Tigray, Ethiopia, there is a large competition between maize production and other horticultural crops for the limited irrigation water. Hence, there is an imminent need to improve the water use efficiency or more importantly the water productivity of the area. The objective of the study was to evaluate the effect of furrow and plant spacing and their interaction on yield and water use efficiency of maize. Experimental treatments include three levels furrow spacing (50, 70 and 90 cm) and three levels of plant spacing (20, 25 and 30 cm) were arranged in factorial RCBD design under three replications. Maize (BH543 variety) was used in this study in which all agronomic practices were treated equally including the amount of water applied. Maize water requirement was estimated using CROPWAT 8 software. The result revealed that there was significant difference among the treatments (p 0.05) for grain yield, biomass yield and irrigation water use efficiency (IWUE). But it was not significantly different for the yield components (plant height and number of cobs per plant). Maximum grain yield (56.26 qt/ha) and IWUE (0.876 kg/m(3)) were obtained from 50 cm furrow and 30 cm plant spacing interaction. But maximum biomass yield (250.6 qt/ha) was obtained from 50 cm furrow and 20 cm plant spacing interaction. The IWUE ranges from 0.357 kg/m(3) to 0.876 kg/m(3) for the equal amount of irrigation water applied (642 mm) for each treatment. This shows how much IWUE of small scale farmers can vary as their agronomic practice (plant and furrow spacing) is different from one another. Hence, it can be concluded that irrigation agronomist experts and development agents of the study area must create awareness to the small scale farmers to exercise 50 cm furrow spacing with 30 cm plant spacing to improve and increase the water productivity of maize. (C) 2016 Elsevier B.V. All rights reserved.
机译:在埃塞俄比亚提格里南部地区,由于灌溉水有限,玉米生产与其他园艺作物之间存在激烈的竞争。因此,迫切需要提高该地区的用水效率,或更重要的是提高该地区的水生产率。该研究的目的是评估犁沟和株距及其相互作用对玉米产量和水分利用效率的影响。实验处理包括三层重复设计,在三因子重复RCBD设计中安排了三个水平的沟距(50、70和90 cm)和三个水平的植物间距(20、25和30 cm)。在这项研究中使用了玉米(BH543品种),所有农艺实践均得到平等对待,包括施用的水量。使用CROPWAT 8软件估算了玉米的需水量。结果表明,在谷物产量,生物量产量和灌溉用水效率(IWUE)之间,处理之间存在显着差异(p <0.05)。但是产量组成(植物高度和单株穗轴数量)没有显着差异。从50厘米的沟距和30厘米的植株间距互作获得最大谷物产量(56.26 qt / ha)和IWUE(0.876 kg / m(3))。但是从50 cm的犁沟和20 cm的植物间距相互作用中获得最大的生物量产量(250.6 qt / ha)。 IWUE范围从0.357 kg / m(3)到0.876 kg / m(3),每次处理的灌溉水量相等(642 mm)。这表明,由于农户的耕作方式(植物和犁沟间距)互不相同,小农户的IWUE可以变化。因此,可以得出结论,研究区域的灌溉农艺师专家和开发人员必须提高小农户对50 cm犁沟距30 cm株距行距的认识,以提高和提高玉米的水分生产率。 (C)2016 Elsevier B.V.保留所有权利。

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