首页> 外文期刊>Journal of Energy and Natural Resources >Yield and Growth of Common Bean (Phaseolus vulgaris L.) Varieties as Influenced by Lime and Phosphorus Under Acid Soil Toxicity of South Western Ethiopia
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Yield and Growth of Common Bean (Phaseolus vulgaris L.) Varieties as Influenced by Lime and Phosphorus Under Acid Soil Toxicity of South Western Ethiopia

机译:普通酸碱毒性下酸土和磷的常见豆类(Phaveolusualusulus L.)品种的产量和生长

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Acidic soils limit the productive potential of crops because of low availability of basic cations and excess of hydrogen and aluminium in exchangeable forms. At the study area, soil acidity is a well-known problem limiting crop productivity. Therefore, this study was conducted to identify common bean variety that tolerate acid soil or low pH soil. Fifteen (15) common bean variety were grown in split plot design under four soil amendments (limed alone, phosphorus alone, both lime and phosphorus treated, and no any amendment) with three replications at three locations in Western and South Western Ethiopia. Data on growth and yield were collected and analyzed using SAS version 9.3 software. Treatment means were compared at 5% level of significance using List significant Different. The results revealed that variety X amendments X locations X seasons interactions were significant (p0.01) for both grain yield and plant height. Availability of varietal difference among common bean varieties under both amended and unamended acid soil conditions was observed. The highest grain yield (1.043 t/ha) under control soil conditions obtained from this result is still below the national average (1.59t/ha), but more than the national average under lime and phosphorus treated plots (1.989t/ha), which shows that the selected variety is responded to lime and phosphorus than tolerant to acid soil. SER 119 variety is selected for those farmers who have the capacity to apply lime with phosphorus based on the yield performance at both locations and also this variety is included in the future work of further selection trials. However, further study is required including considering additional genotypes, at least for three or four years to determine the residual effect of phosphorus and lime to reach at a conclusive recommendation.
机译:由于基本阳离子和过量的氢气和可更换形式的氢和铝,酸性土壤限制了作物的生产潜力。在研究区,土壤酸度是一个众所周知的问题,限制作物生产率。因此,进行该研究以鉴定耐受酸土壤或低pH土壤的常见豆类品种。十五(15)常见的豆类品种在四个土壤修正案(单独含磷,仅磷和磷,也没有任何修正),西南西北部三个地区的三个地区,普通豆类繁殖在分裂块设计中使用SAS版本9.3软件收集和分析了有关生长和产量的数据。使用列表显着不同,在5%的意义水平下比较治疗方法。结果表明,品种X修正案X位置X Seasons相互作用对于谷物产量和植物高度来说是显着的(P <0.01)。观察到在修正和未加工的酸性土壤条件下常见豆品种之间的品种差异的可用性。从该结果获得的对照土壤条件下的最高籽粒产量(1.043吨/公顷)仍低于全国平均水平(1.59t /公顷),但大于石灰和磷处理地块下的全国平均数(1.989t /公顷),这表明所选变化与石灰和磷的响应而不是耐受酸性土壤。选择Ser 119种类为这些农民选择了基于两个地点的产量性能的含有石灰的农民,并且这种品种包括在未来的进一步选择试验的工作中。然而,需要进一步研究,包括考虑额外的基因型,至少三年或四年来确定磷和石灰的残余效果在决定性推荐中达到。

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