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The rkpU gene of Sinorhizobium fredii HH103 is required for bacterial K-antigen polysaccharide production and for efficient nodulation with soybean but not with cowpea

机译:Sinorhizobium HH103的RKPU基因是细菌K-抗原多糖的生产,并用大豆的高效染色但没有豇豆

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In this work, the role of the rkpU and rkpJ genes in the production of the K-antigen polysaccharides (KPS) and in the symbiotic capacity of Sinorhizobium fredii HH103, a broad host-range rhizobial strain able to nodulate soybean and many other legumes, was studied. The rkpJ- and rkpU-encoded products are orthologous to Escherichia coli proteins involved in capsule export. S. fredii HH103 mutant derivatives were contructed in both genes. To our knowledge, this is the first time that the role of rkpU in KPS production has been studied in rhizobia. Both rkpJ and rkpU mutants were unable to produce KPS. The rkpU derivative also showed alterations in its lipopolysaccharide (LPS). Neither KPS production nor rkpJ and rkpU expression was affected by the presence of the flavonoid genistein. Soybean (Glycine max) plants inoculated with the S. fredii HH103 rkpU and rkpJ mutants showed reduced nodulation and clear symptoms of nitrogen starvation. However, neither the rkpJ nor the rkpU mutants were significantly impaired in their symbiotic interaction with cowpea (Vigna unguiculata). Thus, we demonstrate for the first time to our knowledge the involvement of the rkpU gene in rhizobial KPS production and also show that the symbiotic relevance of the S. fredii HH103 KPS depends on the specific bacterium–legume interaction.
机译:在这项工作中,RKPU和RKPJ基因在k-抗原多糖(KPS)中的作用和Sinorhizobium Fredii HH103的共生能力,是一种宽的宿主范围的Rhizobial菌株,能够促进大豆和许多其他豆类,研究过。 RKPJ-and RKPU编码的产品与参与胶囊出口的大肠杆菌蛋白质直观。 S. Fredii HH103突变衍生物在两个基因中被凝结。据我们所知,这是RKPU首次在KPS生产中的作用已经在根扎目中学。 rkpj和rkpu突变体都无法产生KPS。 RKPU衍生物还显示出脂多糖(LPS)的改变。 kps生产和rkpj和rkpu表达都没有受氟核苷酸存在的影响。用S.Fredii HH103 RKPU和RKPJ突变体接种的大豆(甘氨酸MAX)植物表现出降低的染色和氮饥饿症状。然而,在与豇豆(Vigna Unguiculata)的共生相互作用中,RKPJ和RKPU突变体均未显着受损。因此,我们首次证明RKPU基因在Rhizobial KPS生产中的参与,并表明S.FREDII HH103 KPS的共生相关性取决于特定的细菌豆科植被相互作用。

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