首页> 美国卫生研究院文献>Journal of Bacteriology >Rhizobium nodM and nodN genes are common nod genes: nodM encodes functions for efficiency of nod signal production and bacteroid maturation.
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Rhizobium nodM and nodN genes are common nod genes: nodM encodes functions for efficiency of nod signal production and bacteroid maturation.

机译:根瘤菌nodM和nodN基因是常见的nod基因:nodM编码的功能可提高nod信号产生和类杆菌成熟的效率。

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摘要

Earlier, we showed that Rhizobium meliloti nodM codes for glucosamine synthase and that nodM and nodN mutants produce strongly reduced root hair deformation activity and display delayed nodulation of Medicago sativa (Baev et al., Mol. Gen. Genet. 228:113-124, 1991). Here, we demonstrate that nodM and nodN genes from Rhizobium leguminosarum biovar viciae restore the root hair deformation activity of exudates of the corresponding R. meliloti mutant strains. Partial restoration of the nodulation phenotypes of these two strains was also observed. In nodulation assays, galactosamine and N-acetylglucosamine could substitute for glucosamine in the suppression of the R. meliloti nodM mutation, although N-acetylglucosamine was less efficient. We observed that in nodules induced by nodM mutants, the bacteroids did not show complete development or were deteriorated, resulting in decreased nitrogen fixation and, consequently, lower dry weights of the plants. This mutant phenotype could also be suppressed by exogenously supplied glucosamine, N-acetylglucosamine, and galactosamine and to a lesser extent by glucosamine-6-phosphate, indicating that the nodM mutant bacteroids are limited for glucosamine. In addition, by using derivatives of the wild type and a nodM mutant in which the nod genes are expressed at a high constitutive level, it was shown that the nodM mutant produces significantly fewer Nod factors than the wild-type strain but that their chemical structures are unchanged. However, the relative amounts of analogs of the cognate Nod signals were elevated, and this may explain the observed host range effects of the nodM mutation. Our data indicate that both the nodM and nodN genes of the two species have common functions and confirm that NodM is a glucosamine synthase with the biochemical role of providing sufficient amounts of the sugar moiety for the synthesis of the glucosamine oligosaccharide signal molecules.
机译:早些时候,我们显示了苜蓿根瘤菌的nodM编码为葡萄糖胺合酶,而nodM和nodN突变体产生的根毛变形活性大大降低,并显示了苜蓿的结瘤延迟(Baev等人,分子遗传杂志228:113-124, 1991)。在这里,我们证明豆科根瘤菌根瘤菌的nodM和nodN基因恢复了相应的R. meliloti突变株的分泌物的根毛变形活性。还观察到这两个菌株的结节表型部分恢复。在结瘤试验中,尽管N-乙酰氨基葡萄糖的效率较低,但半乳糖胺和N-乙酰氨基葡萄糖可以代替葡糖胺来抑制R. meliloti nodM突变。我们观察到,在由nodM突变体诱导的结节中,类杆菌没有显示出完整的发育或被破坏,从而导致固氮减少,从而降低了植物的干重。该突变体表型也可以通过外源提供的葡萄糖胺,N-乙酰氨基葡萄糖和半乳糖胺来抑制,而在较小程度上可以通过6-磷酸葡萄糖胺来抑制,这表明nodM突变体类固醇限于葡萄糖胺。另外,通过使用野生型和nodM突变体的衍生物,其中nod基因以高组成水平表达,表明nodM突变体产生的Nod因子比野生型菌株少得多,但是它们的化学结构不变。但是,同源Nod信号类似物的相对数量增加了,这可以解释nodM突变对宿主范围的影响。我们的数据表明这两个物种的nodM和nodN基因均具有共同的功能,并证实NodM是葡糖胺合酶,其生化作用是为葡糖胺寡糖信号分子的合成提供足够量的糖部分。

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