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首页> 外文期刊>Irrigation & Drainage Systems Engineering >Determination of Optimal Soil Moisture Depletion Level for Stevia (Stevia Rebaudiana Bertoni) at Wondo Genet, South Ethiopia
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Determination of Optimal Soil Moisture Depletion Level for Stevia (Stevia Rebaudiana Bertoni) at Wondo Genet, South Ethiopia

机译:南埃塞俄比亚Wondo Genet的甜叶菊(Stevia Rebaudiana Bertoni)的最佳土壤水分耗尽水平的测定

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The study was conducted based on the objective to evaluate the optimal soil moisture depletion level of stevia (Stevia rebaudiana Bertoni). Six levels of soil moisture depletion (20, 30, 40, 50, 60, and 100%) with four replications were used in a randomized complete block design. Different levels of total available water depletion significantly (p0.05) affected all recorded yield and yield components. Significantly highest plant height, fresh and dry leaf weight, fresh and dry stem weight, aboveground fresh and dry biomass, and water productivity were obtained as stevia was irrigated below 40% TAW depletion level. However, water productivity was decreased both at higher and lower depletion levels and higher was at 30 and 40% depletion levels. The pooled mean revealed that irrigating stevia under different soil moisture depletion levels had a significant (p0.05) effect on fresh leaf weight, fresh stem weight, dry stem weight, fresh biomass, and water productivity. Moreover, plant height, dry leaf weight, and dry biomass of stevia were also highly significantly (p0.01) affected due to different soil moisture depletion levels. The maximum plant height (23.95 cm), fresh leaf weight (3300.3 kg/ha), fresh stem weight (1213.3 kg/ha), fresh biomass (4513.6 kg/ha) and water productivity (1.92 kg/m3) were recorded at 30% TAW. Moreover, the maximum dry leaf weight (1155.8 kg/ha), dry stem weight (869.0 kg/ha) and dry aboveground biomass (2024.7 kg/ha) were recorded at 40% TAW. On the other hand, the minimum growth, yield and yield component, and water productivity were recorded at 100% TAW. The current study revealed that irrigating stevia after 40% of the total available water in the soil depleted could be practiced in the study area and similar agroecology and soil type as the wider irrigation interval could be achieved without significantly affecting yield and water productivity.
机译:该研究是根据目的进行评价甜叶菊(甜叶菊雷尼尼百吉)的最佳土壤水分耗尽水平的目的。在随机完全块设计中使用具有四种复制的六种土壤水分耗尽(20,30,40,50,60和100%)。不同水平的总可用水耗水显着(P <0.05)影响了所有记录的产量和产量组分。植物高度,清新干燥的叶片重量,新鲜干燥的干茎重,上面的新鲜干燥的生物质,以及水生产率的植物高度最高,水生产率被灌溉40%Taw耗尽水平以下。然而,水生产率在较高且较低的耗尽水平下降低,较高为30%和40%的耗尽水平。汇总的意思揭示了在不同土壤水分耗尽水平下灌溉甜叶菊对新鲜叶重量,新鲜茎重,干燥茎重,新鲜生物质和水生产率的显着(P <0.05)效果显着(P <0.05)。此外,由于土壤水分耗竭水平不同,甜叶菊的植物高度,干燥的叶重量和干燥生物量也受到高度显着的(P <0.01)。最大植物高度(23.95厘米),新鲜叶重量(3300.3千克/公顷),新鲜干重(1213.3千克/公顷),新鲜生物量(4513.6千克/公顷)和水生产率(1.92 kg / m3)被记录在30 %taw。此外,在40%Taw以40%Taw记录最大干燥叶重量(1155.8 kg / ha),干燥茎重量(869.0kg / ha)和干燥地上生物量(2024.7kg / ha)。另一方面,在100%Taw时记录最低生长,产量和产量组分和水生产率。目前的研究表明,在研究区内耗尽的土壤中总可用水的40%后,灌溉甜叶菊可以在研究区域和类似的农业生态和土壤类型中进行,因为可以实现更广泛的灌溉间隔,而不会显着影响产量和水生产率。

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