Response of Maize (<i>Zea Mays</i> L.) to Supplementary Irrigation Under Rain Fed Agriculture at Jimma Agricultural Research Center, South West Ethiopia

Etefa Tilahun, Minda Tadesse, Addisu Asefa, Huluhager Ayanawu, Robel Admassu
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Abstract

Maize is the most extensively produced crop in both Africa and Ethiopia in terms of both land area and production. However, low soil fertility, non-agronomic methods, disease, pests, weeds, and insufficient water, negatively affect its yield. Although there are a lot of maize farming in the Jimma Zone, the yield is very low. The variability of rainfall is one of the causes of the low production, and it has to be supplemented through irrigation. This study was initiated with the objective of determining the effect of supplementary irrigation on the production and productivity of maize (Zea mays L.) under rain-fed agriculture. The field experiment was carried out for three consecutive years, from 2020 to 2022, on the maize (Zea mays L.) crop at the Jimma agricultural research center. The plots were laid out in a randomized complete block design (RCBD) consisting of eight treatments in three replications. The results of the analysis of variance showed that, the different levels of supplementary irrigation had a highly significant (P < 0.05) effect on ear height, but there was no significant difference on plant height. Grain yield and 100 seed weight were significantly (p<0.05) influenced by the application of different levels of supplementary irrigation. The pooled mean analysis indicated that the highest grain yield of 10623.1 kg ha-1 and 100 seed weight of 56.19 gm/plot were recorded from the application of full irrigation (100% ETc). However, the plot with rain fed has given the lowest grain yield (5216.5 kg ha-1) and the lowest 100-seed weight (41.97 gm /plot). In this study, there was a 49.1% yield increment between the fully supplied and the rain-fed maize. The result of partial budget analysis of maize showed that, the highest marginal rate of return and maximum net benefit of 16118 % and 255465 ETB were recorded from one SI at flowering stage and full Supplementary irrigation, respectively. The lowest net benefit (125984 ETB) was obtained at a rain fed treatment. Even though the marginal rate of return was lower, for a sustainable production of maize a full supply irrigation can be recommended.
玉米(<i>Zea Mays</i>在埃塞俄比亚西南部的Jimma农业研究中心,雨水灌溉农业的补充灌溉
就土地面积和产量而言,玉米是非洲和埃塞俄比亚最广泛生产的作物。然而,土壤肥力低、非农艺方法、病虫害、杂草和水分不足对其产量产生不利影响。虽然吉马地区有很多玉米种植,但产量很低。降雨的多变性是造成产量低的原因之一,必须通过灌溉加以补充。本研究旨在确定在雨养农业条件下补灌对玉米(Zea mays L.)产量和生产力的影响。从2020年到2022年,在吉马农业研究中心连续三年对玉米(Zea mays L.)作物进行了田间试验。试验区采用随机完全区设计(RCBD),包括8个处理,3个重复。方差分析结果表明,不同补灌水平对穗高有极显著影响(P < 0.05),对株高无显著影响。全灌(100% ETc)对籽粒产量和百粒重的影响显著(p-1),百粒重达到56.19 gm/田。而雨养小区籽粒产量最低(5216.5 kg hm -1),百粒重最低(41.97 gm /小区)。在本研究中,旱作玉米产量比旱作玉米增产49.1%。玉米部分预算分析结果表明,开花期单次灌溉和充分补充灌溉的边际收益率最高,分别为16118%和255465 ETB。雨养处理的净效益最低(125984 ETB)。尽管边际收益率较低,但为了玉米的可持续生产,可以推荐充分供应的灌溉。
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