首页> 外文期刊>African Journal of Plant Science >Response of onion (Allium cepa l.) to deficit irrigation under different furrow irrigation water management techniques in Raya Valley, Northern Ethiopia
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Response of onion (Allium cepa l.) to deficit irrigation under different furrow irrigation water management techniques in Raya Valley, Northern Ethiopia

机译:埃塞俄比亚北部拉亚河谷不同沟灌水管理技术对洋葱(Alium cepa l。)对亏缺灌溉的响应

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Scarcity of water is the most severe constraint for development of agriculture in arid and semi-arid areas. Under this condition, the need to use the available water economically and efficiently is unquestionable. Based on the actual crop need, irrigation management has to be improved so that the water supply to the crop can be reduced while still achieving high yield. A field experiment was carried out at Mehoni Agricultural Research Center, Raya Valley of Ethiopia, during 2016/17 season with objectives of determining the effect of deficit irrigation on Onion yield component and crop water productivity and the effect of Conventional, Alternate and Fixed furrow irrigation on yield and crop water productivity of onion. The treatment were five deficit irrigation levels (40, 55, 70, 85 and 100% ETc), and three furrow irrigation techniques (conventional, alternate and fixed furrow) were laid out in a random complete block design (RCBD) with three replications. The highest bulb yield was obtained at 100% ETc with conventional furrow method. In terms of irrigation and water use efficiency, 40% ETc deficit irrigation level application gave the highest irrigation water use efficiency and crop water use efficiency which was significantly superior to all other treatment. Among the irrigation water application methods, the highest water use efficiency was obtained with alternate furrow application method. On the other hand, the minimum water use efficiency was recorded with conventional furrow method. Alternative furrow irrigation (AFI) gave the highest crop water use efficiency and irrigation water use efficiency whereas conventional furrow irrigation (CFI) recorded the lowest. Better crop water use efficiency and irrigation water use efficiency were obtained in the AFI and fixed furrow irrigation (FFI), while the applied water in AFI was reduced by 50% of the CFI. Therefore, it can be concluded that increased water saving and associated water productivity can be achieved without significant reduction of yield in AFI with 100% ETc of irrigation level. AFI system appears to be a promising alternative.
机译:缺水是干旱和半干旱地区农业发展的最严重制约因素。在这种情况下,毫无疑问需要经济有效地使用可用水。根据作物的实际需求,必须改进灌溉管理,以减少作物的供水,同时仍能实现高产。在2016/17年度,在埃塞俄比亚拉亚河谷Mehoni农业研究​​中心进行了田间试验,目的是确定亏缺灌溉对洋葱产量构成和作物水分生产率的影响以及常规,交替和固定犁沟灌溉的影响对洋葱的产量和作物水分生产率的影响。处理方法为五个亏缺灌溉水平(40%,55%,70%,85%和100%ETc),并在随机完整块设计(RCBD)中布置了三种垄沟灌溉技术(常规,交替和固定垄沟),重复三遍。使用常规犁沟法在100%ETc下可获得最高的鳞茎产量。在灌溉和水分利用效率方面,施用40%的ETc亏缺灌溉水平可提供最高的灌溉水分利用效率和农作物水分利用效率,这明显优于所有其他处理方法。在灌溉施水方法中,交替使用沟施方法可获得最高的用水效率。另一方面,用常规的沟法记录了最小的用水效率。交替沟灌(AFI)的作物水分利用效率和灌溉用水效率最高,而常规沟灌(CFI)的最低。在AFI和固定沟灌(FFI)中获得了更好的农作物水分利用效率和灌溉用水效率,而在AFI中施用的水减少了CFI的50%。因此,可以得出结论:在灌溉水平ETc为100%的情况下,无需大幅降低AFI的产量即可实现节水和相关水生产率的提高。 AFI系统似乎是一个有前途的替代方案。

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