首页> 外文期刊>Journal of Plant Nutrition >Interactive effects of co-inoculation of Bradyrhizobium japonicum strains and mycorrhiza species on soybean growth and nutrient contents in plant
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Interactive effects of co-inoculation of Bradyrhizobium japonicum strains and mycorrhiza species on soybean growth and nutrient contents in plant

机译:青霉株粳稻菌株和菌根物种对植物大豆生长和营养物质的互动效应

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摘要

The main objective of this study was to investigate the effects of co-inoculation with different strains of Bradyrhizobium japonicum (i.e. Helinitro, Rizoking, and Nitragin) and arbuscular mycorrhizal fungi (AMF) species (i.e. Glomus fasciculatum, Glomus versiforme, Glomus intraradices, Glomus mosseae, and Glomus etunicatum) on soybean growth, fungal root colonization, and nutrient uptake of nitrogen (N), phosphorus (P), zinc (Zn), iron (Fe), and copper (Cu). Co-inoculation with various AMF species and rhizobia significantly (p&0.01) increased the soybean biomass production as compared to the non-inoculated controls. Furthermore, AMF colonization of roots of soybean plants increased by 79, 70.1, 67, 63, 57.5, and 50.1% in the presence of G. fasciculatum (GF), G. versiforme (GV), G. intraradices (GI), G. mosseae (GM), and G. etunicatum (GE), and Gmix (a mixed culture of fungi), respectively. Higher nutrient contents were observed in plants co-inoculated with Helinitro and GF. More insight into these results will enable optimization of the effective use of AM fungi in combination with their bacterial partners as a tool for increasing soybean yields in Iran; however, its general analytical framework could be applied to other parts of the world.
机译:本研究的主要目的是探讨与粳稻(即Helinitro,令人报力)的不同菌株(即Helinitro,令人报刑和Nitragin)和丛生菌根真菌(AMF)物种的影响(即Glomus Fasciculatum,Glomus Verssiforme,Glomus mortramices,Glomus脊髓植物和灵绒菌)对大豆生长,真菌根定子,氮(N),磷(P),锌(Zn),铁(Fe)和铜(Cu)的营养吸收。与非接种对照相比,具有各种AMF物种和根瘤菌的共同接种(P& 0.01)增加大豆生物量产量。此外,在G. Fasciculatum(GF),G. veriforme(GV),G.内部(Gi),G.内部(GF),G.内部(GI),G.在G. Fasciculatum(GF),G。 。分别。米梭(GM)和G. Etunicatum(GE),以及Gmix(真菌的混合培养)。在与Helinitro和GF共同接种的植物中观察到更高的营养物质。更多地洞察这些结果将使优化AM真菌的有效使用与其细菌合作伙伴的组合作为伊朗提高大豆产量的工具;然而,其一般分析框架可以应用于世界其他地区。

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