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首页> 外文期刊>Irrigation & Drainage Systems Engineering >Optimal Soil Moisture Depletion Levels for the Production of Vernonia (Vernonia galamensis L.) and it?¢????s Effect on Growth, Yield and Yield Components
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Optimal Soil Moisture Depletion Levels for the Production of Vernonia (Vernonia galamensis L.) and it?¢????s Effect on Growth, Yield and Yield Components

机译:产Vernonia(Vernonia galamensis L.)的最佳土壤水分消耗水平及其对生长,产量和产量构成的影响

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The field experiment was carried out at Wondo Genet Agricultural Research Center 07°03’19’’ to 07°04’00’’ N latitude and 38°30’08’’ to 38°31’02’ E longitude during 2015/16 dry season. The experiments were arranged in a randomized complete block design with three replications. Seven soil moisture depletion levels (30, 40, 50, 60, 70, 80 and 100% of the total available water of the soil) were used. The result indicated that different soil moisture depletion levels had very highly significant (p<0.001) effect on days to flowering, days to seed set, days to maturity, plant height, number of branches per plant, number of capsules per plant, thousand seed weight and seed yield. It was also affected oil yield highly significantly (p<0.01). Moreover, different soil moisture depletion levels significantly (p<0.05) influenced water use efficiency. However, different soil moisture depletion levels showed no significant difference in the oil content of Vernonia. Vernonia grown under 100% SMDL took a shorter number of days to 50% flowering, days to seed setting and days to maturity. On the other hand, 30% SMDL took the longest days to flowering, seed setting and days to maturity. The maximum plant height, number of branches per plant and number of capsule per plant were 162.7 cm, 150 and 196.8 at 30% SMDL, respectively. The highest seed yield (2213 kg ha-1) and oil yield (711.8 kg ha-1) were obtained at 60% soil moisture depletion level. However, the highest water use efficiency based on oil yield (0.15 kg/m3) was obtained at 100% SMDL irrigation is set when soil moisture content touches PWP. Thus, the optimal seed yield, oil yield and WUE could be achieved when 493.4 mm seasonal net irrigation depth of water applied with scheduling at 60% SMDL for the production of Vernonia at Wondo Genet and similar agro-ecological areas.
机译:在2015/16年期间,在Wondo Genet农业研究中心进行了野外试验,纬度为北纬07°03'19''至07°04'00'',东经38°30'08''至38°31'02'旱季。实验以随机重复的完整区组设计进行,重复三遍。使用了七个土壤水分消耗水平(分别占土壤总可用水的30%,40%,50%,60%,70%,80%和100%)。结果表明,不同的土壤水分消耗水平对开花天数,结实天数,成熟天数,植株高度,单株枝数,每株荚膜数,千粒种子有非常显着(p <0.001)的影响。重量和种子产量。它还显着地影响了油的收率(p <0.01)。此外,不同的土壤水分消耗水平显着(p <0.05)影响了水分利用效率。但是,不同的土壤水分消耗水平显示,Vernonia的含油量没有显着差异。在100%SMDL下生长的Vernonia花了较短的天数到50%的花期,结实的天数和成熟的天数。另一方面,30%的SMDL花了最长的时间才能开花,结实和成熟。在30%SMDL时,最大株高,单株分支数和单株荚膜数分别为162.7 cm,150和196.8。在60%的土壤水分消耗水平下,可获得最高的种子产量(2213 kg ha-1)和油脂产量(711.8 kg ha-1)。但是,当土壤含水量达到PWP时,以100%SMDL灌溉时,可获得基于油产量的最高水分利用效率(0.15 kg / m3)。因此,当在旺多热内特和类似的农业生态区以49%的季节性净灌溉水量以60%SMDL的排污量施肥时,可以实现最佳的种子产量,油脂产量和WUE。

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