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首页> 外文期刊>Archives of Microbiology >Sinorhizobiumfredii HH103 does not strictly require KPS and/or EPS to nodulate Glycyrrhiza uralensis, an indeterminate nodule-forming legume
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Sinorhizobiumfredii HH103 does not strictly require KPS and/or EPS to nodulate Glycyrrhiza uralensis, an indeterminate nodule-forming legume

机译:中华根瘤菌HH103并不严格要求KPS和/或EPS来结节甘草(一种不确定的结节性豆科植物)。

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The Sinorhizobium fredii HH103 rkp-1 region, which is involved in capsular polysaccharide (KPS) biosynthesis, is constituted by the rkpU, rkpAGHIJ, and kpsF3 genes. Two mutants in this region affecting the rkpA (SVQ536) and rkpI (SVQ538) genes were constructed. Polyacrylamide gel electrophoresis and 1H-NMR analyses did not detect KPS in these mutants. RT-PCR experiments indicated that, most probably, the rkpAGHI genes are cotranscribed. Glycine max cultivars (cvs.) Williams and Peking inoculated with mutants SVQ536 and SVQ538 showed reduced nodulation and symptoms of nitrogen starvation. Many pseudonodules were also formed on the American cv. Williams but not on the Asiatic cv. Peking, suggesting that in the determinate nodule-forming S. fredii-soybean symbiosis, bacterial KPS might be involved in determining cultivar-strain specificity. S. fredii HH103 mutants unable to produce KPS or exopolysaccharide (EPS) also showed reduced symbiotic capacity with Glycyrrhiza uralensis, an indeterminate nodule-forming legume. A HH103 exoA-rkpH double mutant unable to produce KPS and EPS was still able to form some nitrogen-fixing nodules on G. uralensis. Thus, here we describe for the first time a Sinorhizobium mutant strain, which produces neither KPS nor EPS is able to induce the formation of functional nodules in an indeterminate nodule-forming legume.
机译:费德氏中华根瘤菌HH103 rkp-1区参与了荚膜多糖(KPS)的生物合成,由rkpU,rkpAGHIJ和kpsF3基因组成。构建了该区域中影响rkpA(SVQ536)和rkpI(SVQ538)基因的两个突变体。聚丙烯酰胺凝胶电泳和 1 1H-NMR分析未检测到这些突变体中的KPS。 RT-PCR实验表明,很可能rkpAGHI基因是共转录的。接种突变体SVQ536和SVQ538的威廉斯和北京大豆最大栽培品种(Cvs。)显示结瘤减少和氮饥饿症状。美国简历上还形成了许多假瘤。威廉姆斯,但不在亚洲简历上。北京研究表明,在确定的结节形成的弗雷德氏酵母-大豆共生中,细菌KPS可能参与确定品种菌株的特异性。无法产生KPS或胞外多糖(EPS)的S. fredii HH103突变体还显示出与不确定的结节豆科植物甘草甘草的共生能力降低。一个无法产生KPS和EPS的HH103 exoA-rkpH双突变体仍然能够在G.uralensis上形成一些固氮根瘤。因此,在这里,我们首次描述了既不产生KPS也不产生EPS的中华根瘤菌突变株,能够在不确定的形成结节的豆科植物中诱导功能性结节的形成。

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