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An Azorhizobium caulinodans ORS571 locus involved in lipopolysaccharide production and nodule formation on Sesbania rostrata stems and roots.

机译:假单胞菌(Azozozobium caulinodans)ORS571位点参与脂多糖(Sesbania rostrata)茎和根的脂多糖生产和根瘤形成。

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摘要

Azorhizobium caulinodans ORS571 is able to nodulate roots and stems of the tropical legume Sesbania rostrata. An ORS571 Tn5 insertion mutant, strain ORS571-X15, had a rough colony morphology, was nonmotile, and showed clumping behavior on various media. When this pleiotropic mutant was inoculated on roots or stems of the host, no nodules developed (Nod-). Compared with the wild type, strain ORS571-X15 produced lipopolysaccharides (LPS) with an altered ladder pattern on sodium dodecyl sulfate-polyacrylamide gel electrophoresis gels, suggestive of a different O-antigen structure with a lower degree of polymerization. A cosmid clone, pRG20, that fully complemented all phenotypes of ORS571-X15 was isolated. With a 6-kb EcoRI subfragment of pRG20, clumping was relieved and nodulation was almost completely restored, but the strain was still nonmotile. LPS preparations from these complemented strains resembled the wild-type LPS, although minor quantitative and qualitative differences were evident. The sequence of the locus hit by the Tn5 in ORS571-X15 (the oac locus) revealed a striking homology with the rfb locus of Salmonella typhimurium, which is involved in O-antigen biosynthesis. The Tn5 insertion position was mapped to the oac3 gene, homologous to rfbA, encoding dTDP-D-glucose synthase. Biochemical assaying showed that ORS571-X15 is indeed defective in dTDP-D-glucose synthase activity, essential for the production of particular deoxyhexoses. Therefore, it was proposed that the O antigen of the mutant strain is devoid of such sugars.
机译:满江红假单胞菌ORS571能够根结热带豆类Sesbania rostrata的根和茎。 ORS571 Tn5插入突变株ORS571-X15,具有粗糙的菌落形态,不活动,并在各种培养基上表现出团聚行为。当该多效性突变体接种在宿主的根或茎上时,没有结节形成(Nod-)。与野生型相比,ORS571-X15菌株在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳凝胶上产生的梯形改变了的脂多糖(LPS),提示不同的O抗原结构具有较低的聚合度。分离出完全互补于ORS571-X15所有表型的粘粒克隆pRG20。用pRG20的6 kb EcoRI亚片段,结块得到缓解,结瘤几乎完全恢复,但该菌株仍然不活动。这些互补菌株的LPS制剂类似于野生型LPS,尽管在数量和质量上存在细微差别。 Tn5在ORS571-X15中的基因座序列(oac基因座)显示与鼠伤寒沙门氏菌的rfb基因座具有惊人的同源性,后者与O抗原的生物合成有关。 Tn5插入位置被映射到与rfbA同源的编码dTDP-D-葡萄糖合酶的oac3基因。生化分析表明,ORS571-X15的dTDP-D-葡萄糖合酶活性确实存在缺陷,这对于生产特定的脱氧己糖至关重要。因此,提出突变株的O抗原不含这种糖。

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