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首页> 外文期刊>Molecular Plant-Microbe Interactions >Sinorhizobium fredii HH103 rkp-3 Genes Are Required for K-Antigen Polysaccharide Biosynthesis, Affect Lipopolysaccharide Structure and Are Essential for Infection of Legumes Forming Determinate Nodules
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Sinorhizobium fredii HH103 rkp-3 Genes Are Required for K-Antigen Polysaccharide Biosynthesis, Affect Lipopolysaccharide Structure and Are Essential for Infection of Legumes Forming Determinate Nodules

机译:fredii中华根瘤菌HH103 rkp-3基因是K抗原多糖生物合成所必需的,影响脂多糖的结构,并且对于豆类形成确定结节的感染至关重要。

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The Sinorhizobium fredii HH103 rkp-3 region has been isolated and sequenced. Based on the similarities between the S. fredii HH103 rkpL, rkpM, rkpN, rkpO, rkpP, and rkpQ genes and their corresponding orthologues in Helicobacter pylori, we propose a possible pathway for the biosynthesis of the S. fredii HH103 K-antigen polysaccharide (KPS) repeating unit. Three rkp-3 genes (rkpM, rkpP, and rkpQ) involved in the biosynthesis of the HH103 KPS repeating unit (a derivative of the pseudaminic acid) have been mutated and analyzed. All the rkp-3 mutants failed to produce KPS and their lipopolysaccharide (LPS) profiles were altered. These mutants showed reduced motility and auto-agglutinated when early-stationary cultures were further incubated under static conditions. Glycine max, Vigna unguiculata (determinate nodule-forming legumes), and Cajanus cajan (indeterminate nodules) plants inoculated with mutants in rkpM, rkpQ, or rkpP only formed pseudonodules that did not fix nitrogen and were devoid of bacteria. In contrast, another indeterminate nodule-forming legume, Glycyrrhiza uralensis, was still able to form some nitrogen-fixing nodules with the three S. fredii HH103 rifampicin-resistant rkp-3 mutants tested. Our results suggest that the severe symbiotic impairment of the S. fredii rkp-3 mutants with soybean, V. unguiculata, and C. cajan is mainly due to the LPS alterations rather than to the incapacity to produce KPS.
机译:费氏中华根瘤菌HH103 rkp-3区域已被分离和测序。根据S.fredii HH103幽门螺杆菌rkpL,rkpM,rkpN,rkpO,rkpP和rkpQ基因与它们对应的直向同源物之间的相似性,我们提出了S.fredii HH103 K-抗原多糖的生物合成的可能途径KPS)重复单元。已对与HH103 KPS重复单元(伪氨基酸的衍生物)的生物合成有关的三个rkp-3基因(rkpM,rkpP和rkpQ)进行了突变和分析。所有rkp-3突变体均无法产生KPS,并且其脂多糖(LPS)谱已被改变。当在静态条件下进一步孵育早期固定培养物时,这些突变体显示出降低的运动性并自动凝集。在rkpM,rkpQ或rkpP中接种了突变体的Glycine max,Vigna unguiculata(确定结节性豆科植物)和Cajanus cajan(确定性结节)植物仅形成了不固定氮且不含细菌的假结节。相反,另一种不确定的形成结节的豆科植物甘草甘草仍能够通过测试的三个耐弗雷德氏菌HH103耐利福平的rkp-3突变体形成一些固氮结节。我们的结果表明,S。fredii rkp-3突变体与大豆,V。unguiculata和C. cajan的严重共生损害主要是由于LPS改变,而不是由于不能生产KPS。

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