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Nodulation and Nitrogen Fixation Efficacy of Rhizobium fredii with Phaseolus vulgaris Genotypes

机译:菜豆基因型弗氏根瘤菌的结瘤和固氮功效。

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摘要

Phaseolus plant introduction (PI) genotypes (consisting of 684 P. vulgaris, 26 P. acutifolius, 39 P. lunatus, and 5 P. coccineus accessions) were evaluated for their ability to form effective symbioses with strains of six slow-growing (Bradyrhizobium) and four fast-growing (Rhizobium fredii) soybean rhizobia. Of the 684 P. vulgaris genotypes examined, three PIs were found to form effective nitrogen-fixing symbioses with the R. fredii strains. While none of the Bradyrhizobium strains nodulated any of the genotypes tested, some produced large numbers of undifferentiated root proliferations (hypertrophies). A symbiotic plasmid-cured R. fredii strain failed to nodulate the P. vulgaris PIs and cultivars, suggesting that P. vulgaris host range genes are Sym plasmid borne in the fast-growing soybean rhizobia.
机译:评估了菜豆植物导入(PI)基因型(由684 P.寻常型,26 P. acutifolius,39 P. lunatus和5 P. coccineus入种组成)与六种缓慢生长菌株(Bradyrhizobium)形成有效共生体的能力。 )和4种速生(Rhizobium fredii)大豆根瘤菌。在检查的684个寻常型P.寻常型中,发现三个PI与弗雷德氏菌菌株形成有效的固氮共生体。尽管所有的缓生根瘤菌菌株均未检出任何经测试的基因型,但有些菌株会产生大量未分化的根系增生(肥大)。共生质粒固化的弗雷德氏菌菌株未能结节寻常型腐殖质的PI和品种,表明寻常型疟原虫寄主范围基因是在快速生长的大豆根瘤菌中携带的Sym质粒。

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