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百脉根根瘤中根瘤特异性百脉根根瘤菌化合物的生物合成与降解

Biosynthesis and degradation of nodule-specific Rhizobium loti compounds in Lotus nodules.

作者信息

Scott D B, Wilson R, Shaw G J, Petit A, Tempe J

出版信息

J Bacteriol. 1987 Jan;169(1):278-82. doi: 10.1128/jb.169.1.278-282.1987.

Abstract

Two nodule-specific Rhizobium loti compounds were identified in Lotus tenuis and Lotus pedunculatus nodules induced by strain NZP2037. One, a silver nitrate-positive cation called rhizolotine, has been characterized as the riboside of a novel alpha-hydroxyimino acid containing a 1,4,5,6-tetrahydropyrimidine ring (G. J. Shaw, R. D. Wilson, G. A. Lane, L. D. Kennedy, D. B. Scott, and G. J. Gainsford, J. Chem. Soc. Chem. Commun., p. 180-181, 1986), and the other, yellow-1, stains yellow with ninhydrin. Both compounds were degraded by R. loti NZP2037 but not by strains of Rhizobium meliloti, Rhizobium trifolii, or Agrobacterium tumefaciens. Under the conditions tested neither compound was able to serve as a sole source of C or N for growth of R. loti NZP2037. Rhizolotine and yellow-1 were found in nodules from a range of different legumes inoculated with NZP2037, suggesting that the Rhizobium and not the host plant determines their synthesis. Neither compound was found in nodulelike structures of L. pedunculatus induced by transposon Tn5-induced noninfectious (Inf-) mutants of NZP2037 or in similar structures induced by a transconjugant of NZP2037 containing the symbiotic (Sym) cointegrate plasmid pPN1 of R. trifolii. Both compounds were also absent in the ineffective nodules induced by the bacterial-release-negative (Bar-) mutant, strain PN239. However, both compounds were present in nodules induced by the fixation-negative (Fix-) mutant PN235 and in Fix+ nodules formed by a plasmid-cured derivative of NZP2037. These results would suggest that infection and bacterial release from the infection thread are necessary for nodule (symbiotic) synthesis of these compounds.

摘要

在由菌株NZP2037诱导形成的细叶百脉根和花梗百脉根根瘤中,鉴定出了两种根瘤特异性的百脉根根瘤菌化合物。一种是名为根瘤碱的硝酸银阳性阳离子,其特征为含有1,4,5,6 - 四氢嘧啶环的新型α - 羟基亚氨基酸的核糖苷(G. J. 肖、R. D. 威尔逊、G. A. 莱恩、L. D. 肯尼迪、D. B. 斯科特和G. J. 盖恩斯福德,《化学学会化学通讯》,第180 - 181页,1986年),另一种是黄色 - 1,与茚三酮反应呈黄色。这两种化合物都能被百脉根根瘤菌NZP2037降解,但不能被苜蓿根瘤菌、三叶草根瘤菌或根癌土壤杆菌的菌株降解。在测试条件下,这两种化合物都不能作为百脉根根瘤菌NZP2037生长的唯一碳源或氮源。在接种了NZP2037的一系列不同豆科植物的根瘤中都发现了根瘤碱和黄色 - 1,这表明是根瘤菌而非宿主植物决定了它们的合成。在由转座子Tn5诱导的NZP2037非感染性(Inf -)突变体诱导形成的花梗百脉根类根瘤结构中或者由含有三叶草根瘤菌共生(Sym)共整合质粒pPN1的NZP2037接合子诱导形成的类似结构中,均未发现这两种化合物。在细菌释放阴性(Bar -)突变体菌株PN239诱导形成的无效根瘤中也没有这两种化合物。然而,在固定阴性(Fix -)突变体PN235诱导形成的根瘤以及由NZP2037的质粒消除衍生物形成的Fix +根瘤中都存在这两种化合物。这些结果表明感染以及从感染丝中释放细菌对于这些化合物的根瘤(共生)合成是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68b7/211764/941282363419/jbacter00191-0298-a.jpg

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