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首页> 外文期刊>Journal of Engineering and Technology Research >Effects of in-situ moisture conservation techniques on maize (Zea mays) yield and yield components in moisture deficit area of Dugda Woreda, Ethiopia
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Effects of in-situ moisture conservation techniques on maize (Zea mays) yield and yield components in moisture deficit area of Dugda Woreda, Ethiopia

机译:原位水分保护技术对埃塞俄比亚Dugda Woreda水分缺陷区域玉米(ZeA 5月)产量和产量组分的影响

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The study was conducted during 2018 cropping season at Dugda Woreda to investigate the effect of in situ moisture conservation techniques on grain yield and yield components of maize. Treatments comprised of tied ridge, furrow closed at both end and farmer’s practices (as the control). The experiment was laid out in a Randomized Complete Block Design (RCBD) with three replication. The grain yield and thousand seed weight showed highly significantly difference (p0.001) on tied ridge and furrow closed at both end as compared to farmer practices. But the number of stand counts and cobs at harvest per hectare were not significantly (p0.05) varied on tied ridge, furrow closed at both end and farmer practice, respectively. Tied ridge practices had increases maize grain yield and thousand seed weight (g) by up to 45.52% (2.7913 ton ha-1) and 41.43% above farmer practice (control), respectively. Also furrow closed at both end increased the grain yield and thousand seed weight (g) by up to 30.68% (1.882 ton ha-1) and 27.63% as compared to farmers' practice, respectively. These results claim the potential use of tied ridge and furrow closed at both end improved grain yield and thousand seed weight in the study areas by enhancing moisture in the soil. Therefore, in situ moisture conservation (tied ridge and furrow closed at both end) structure is a promising moisture conservation structures to mitigate dry spell period and improve maize production in the study area and similarly agro ecology.
机译:该研究在Dugda Woreda进行了2018年的作品季节,探讨了原位水分保护技术对玉米籽粒产量和产量组分的影响。治疗包括脊脊,沟在末端和农民的实践中关闭(作为对照)。该实验在随机完整块设计(RCBD)中布置出三种复制。与农民实践相比,谷物产量和千种子重量在两端闭合的脊和沟槽上闭合的脊柱和沟槽的高度显着差异(P <0.001)。但是每公顷收获的支架数量和玉米棒的数量并没有显着(P> 0.05)各种各样的脊柱,分别在两端和农民实践中闭合。 Tied Ridge实践分别将玉米籽粒产量和千种子重量(g)增加至多45.52%(2.7913吨HA-1)和41.43%以上的农民实践(控制)。在两端的沟槽闭合,与农民的实践相比,两端的凹陷均均匀增加谷物产量和千种子重量(g)达30.68%(1.882吨HA-1)和27.63%。这些结果声明了通过增强土壤中的水分,在最终改善谷物产量和研究区域中的饱和脊和沟槽的潜在使用。因此,原位水分保护(在两端闭合的脊和沟槽)结构是一种有希望的水分保护结构,以减轻干燥的法术周期并改善研究区域的玉米产量和同样的农业生态学。

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