首页> 外文期刊>Advances in Applied Agricultural Sciences >Rhizobial inoculation methods affect the nodulation and plant growth traits of host plant genotypes: A case study of Common bean Phaseolus vulgaris L. germplasms cultivated by smallholder farmers in Eastern Kenya
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Rhizobial inoculation methods affect the nodulation and plant growth traits of host plant genotypes: A case study of Common bean Phaseolus vulgaris L. germplasms cultivated by smallholder farmers in Eastern Kenya

机译:根瘤菌接种方法影响寄主植物基因型的结瘤和植物生长性状:以肯尼亚东部小农户种植的菜豆菜豆种质为例

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Rhizobia inoculants are soil bacteria that promote biological nitrogen fixation (BNF). Understanding of rhizobia-host genotype association is a critical step in enhancing legume productivity. Questionnaires were used to identify the common bean varieties cultivated in Eastern Kenya. The native rhizobia were isolated from the root nodules of MAC 13 and MAC 64 bean varieties. Afterwards, a greenhouse bioassay with four inoculation treatments using sterilized soil; 1) mixture of isolated strains, 2) commercial exotic inoculant (Biofix), 3) mixture of isolated strain + commercial inoculant, 4) control without inoculation were set up in a complete randomized design with three replications. Four weeks later, beans were sampled and examined for nodule number (NNO), nodule dry weight (NDW), shoot dry weight (SDW), root dry weight (RDW), shoot nitrogen (%N) and phosphorus (P). Results demonstrated that highest and significant (p0.05) NDW, SDW and shoot %N content were achieved in a mix of native consortium+ commercial rhizobia, while the highest and significant (p0.05) P content was realized in a consortium of native rhizobia inoculation. Moreover, there was a significant interaction (p0.05) between rhizobia and bean varieties with Kabuu recording the highest NDW, SDW, %N and P contents in a mix of native consortium+ commercial exotic rhizobia. Gacere recorded the highest NDW and SDW when inoculated with commercial rhizobia. Native rhizobia inoculation recorded the highest shoot %N variability in all bean varieties when compared to commercial and a mixture of native+ commercial rhizobia. These results show the mutual preference that exists between rhizobia and bean varieties and the multistrain synergism between native and commercial exotic rhizobia. Further studies should explicate the performance of diverse native rhizobia inoculants used in this study under field conditions.
机译:根瘤菌孕育剂是促进生物固氮(BNF)的土壤细菌。了解根瘤菌宿主基因型关联是提高豆类生产力的关键步骤。通过问卷调查确定了肯尼亚东部种植的普通豆品种。天然根瘤菌是从MAC 13和MAC 64豆品种的根瘤中分离出来的。此后,进行了温室生物测定,其中包括使用无菌土壤进行的四种接种处理; 1)在完全随机设计中进行三重复,设置1)分离菌株的混合物,2)商业外来接种剂(Biofix),3)分离菌株+商业接种剂的混合物,4)没有接种的对照。四周后,对豆取样并检查其结节数(NNO),结节干重(NDW),枝干重(SDW),根干重(RDW),枝条氮(%N)和磷(P)。结果表明,在天然财团+商业根瘤菌的混合物中,NDW,SDW和枝条%N含量最高且显着(p <0.05),而在天然根瘤菌的财团中P含量最高且显着(p <0.05)接种。此外,根瘤菌和豆类品种之间存在显着的交互作用(p <0.05),其中Kabuu记录了在天然财团+商业外来根瘤菌的混合物中最高的NDW,SDW,%N和P含量。当接种商业根瘤菌时,Gacere记录的NDW和SDW最高。与商业的和自然+商业的根瘤菌的混合物相比,自然的根瘤菌接种在所有豆品种中记录了最高的芽%N变异性。这些结果表明,在根瘤菌和豆类品种之间存在着相互的偏爱,在本地和商业的外来根瘤菌之间存在多株协同作用。进一步的研究应阐明在田间条件下用于本研究的多种天然根瘤菌接种剂的性能。

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