首页> 外文期刊>Communications in Soil Science and Plant Analysis >Influence of P sources and rhizobium inoculation on growth and yield of soybean genotypes on Ferric Lixisols of Northern Guinea savanna zone of Ghana
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Influence of P sources and rhizobium inoculation on growth and yield of soybean genotypes on Ferric Lixisols of Northern Guinea savanna zone of Ghana

机译:P源和根瘤菌接种对大豆基因型生长和产量对加纳北部犹豫不决区

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摘要

Soybean is becoming an important cash crop in northern Ghana. Yet the yields are low due to use of low yielding varieties and limited use of inputs. Greenhouse and field experiments were carried out to evaluate the effects of two phosphorus (P) sources and Rhizobium inoculation on growth, nodulation, P uptake, and yield of three soybean genotypes on Ferric Lixisols of the Guinea savanna zone of Ghana. The P sources were triple superphosphate (TSP) and Morocco phosphate rock (MPR), while the genotypes were TGx 1448-2E, TGx 1904-6F, and TGx 1955-4F. The greenhouse experiment was conducted at the University of Ghana, Legon in a completely randomized design. The field experiment which was carried out in the Upper East region of Ghana was laid out in a split-split plot design with four replicates. In both the greenhouse and field experiments, application of TSP at 30 kg P ha(-1) resulted in significantly higher growth and P uptake in shoot compared with MPR and control. Soybean genotypes showed significant differences in growth, nutrient uptake, and grain yield in both the greenhouse and the field experiments. Rhizobium inoculation increased nodule number and dry weight but did not increase grain yield. The genotype TGx 1955-4F appears to show greater potential for increasing productivity of soybean in low P soils in northern Ghana.
机译:大豆正在成为加纳北部的重要现金作物。然而,由于使用低产品种和有限的输入,收益率较低。进行温室和田间实验,以评估两种磷(P)来源和根序接种对加纳几内亚大草原区的三种大豆基因型的生长,旋转,P吸收和产量的影响。 P源是三磷酸三倍磷酸锌(TSP)和摩洛哥磷酸盐岩(MPR),而基因型是TGX 1448-2E,TGX 1904-6F和TGX 1955-4F。温室实验是在加纳大学进行的,乐龙龙在一个完全随机的设计中。在加纳的上东地区进行的现场实验在分裂的绘图设计中被定制,四个重复。在温室和现场实验中,与MPR和对照相比,在30kg P ha(-1)下的施用TSP在射击中产生显着更高,P拍摄显着增加。大豆基因型在温室和现场实验中显示出生长,营养吸收和籽粒产量的显着差异。根瘤菌接种增加结节数和干重,但未增加谷物产量。 Genotype TGX 1955-4F似乎显示出较大的加纳低P土壤中大豆生产率提高潜力。

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