首页> 美国卫生研究院文献>Journal of Bacteriology >The rkp-1 Cluster Is Required for Secretion of Kdo Homopolymeric Capsular Polysaccharide in Sinorhizobium meliloti Strain Rm1021
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The rkp-1 Cluster Is Required for Secretion of Kdo Homopolymeric Capsular Polysaccharide in Sinorhizobium meliloti Strain Rm1021

机译:rkp-1簇是分泌苜蓿中华根瘤菌Rm1021中的Kdo均聚荚膜多糖所必需的

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摘要

Under conditions of nitrogen stress, leguminous plants form symbioses with soil bacteria called rhizobia. This partnership results in the development of structures called root nodules, in which differentiated endosymbiotic bacteria reduce molecular dinitrogen for the host. The establishment of rhizobium-legume symbioses requires the bacterial synthesis of oligosaccharides, exopolysaccharides, and capsular polysaccharides. Previous studies suggested that the 3-deoxy-d-manno-oct-2-ulopyranosonic acid (Kdo) homopolymeric capsular polysaccharide produced by strain Sinorhizobium meliloti Rm1021 contributes to symbiosis with Medicago sativa under some conditions. However, a conclusive symbiotic role for this polysaccharide could not be determined due to a lack of mutants affecting its synthesis. In this study, we have further characterized the synthesis, secretion, and symbiotic function of the Kdo homopolymeric capsule. We showed that mutants lacking the enigmatic rkp-1 gene cluster fail to display the Kdo capsule on the cell surface but accumulate an intracellular polysaccharide of unusually high Mr. In addition, we have demonstrated that mutations in kdsB2, smb20804, and smb20805 affect the polymerization of the Kdo homopolymeric capsule. Our studies also suggest a role for the capsular polysaccharide in symbiosis. Previous reports have shown that the overexpression of rkpZ from strain Rm41 allows for the symbiosis of exoY mutants of Rm1021 that are unable to produce the exopolysaccharide succinoglycan. Our results demonstrate that mutations in the rkp-1 cluster prevent this phenotypic suppression of exoY mutants, although mutations in kdsB2, smb20804, and smb20805 have no effect.
机译:在氮胁迫条件下,豆科植物与土壤细菌称为根瘤菌形成共生体。这种伙伴关系导致了称为根瘤的结构的发展,其中分化的共生细菌减少了宿主的分子二氮。豆科根瘤菌共生菌的建立需要细菌合成寡糖,胞外多糖和荚膜多糖。先前的研究表明,在某些条件下,由苜蓿中华根瘤菌Rm1021菌株产生的3-deoxy-d-manno-oct-2-ulopyranosonic acid(Kdo)均聚荚膜多糖有助于与苜蓿共生。然而,由于缺乏影响其合成的突变体,因此无法确定该多糖的决定性共生作用。在这项研究中,我们进一步表征了Kdo均聚物胶囊的合成,分泌和共生功能。我们发现缺少神秘的rkp-1基因簇的突变体无法在细胞表面显示Kdo胶囊,但会积累异常高先生的胞内多糖。此外,我们已经证明kdsB2,smb20804和smb20805中的突变会影响聚合的Kdo均聚物胶囊。我们的研究还表明荚膜多糖在共生中的作用。以前的报道表明,菌株Rm41中rkpZ的过表达使得Rm1021的exoY突变体能够共生,而这些突变体无法产生胞外多糖琥珀聚糖。我们的结果表明,尽管kdsB2,smb20804和smb20805中的突变没有作用,但rkp-1簇中的突变阻止了exoY突变体的这种表型抑制。

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