Baev N, Endre G, Petrovics G, Banfalvi Z, Kondorosi A
Institute of Genetics, Hungarian Academy of Sciences, Szeged.
Mol Gen Genet. 1991 Aug;228(1-2):113-24. doi: 10.1007/BF00282455.
The nucleotide sequence of the nod box locus n4 in Rhizobium meliloti was determined and revealed six genes organized in a single transcriptional unit, which are induced in response to a plant signal such as luteolin. Mutations in these genes influence the early steps of nodule development on Medicago, but have no detectable effect on Melilotus, another host for R. meliloti. Based on sequence homology, the first open reading frame (ORF) corresponds to the nodM gene and the last to the nodN gene of Rhizobium leguminosarum. The others do not exhibit similarity to any genes sequenced so far, so we designated them as nolF, nolG, nolH and nolI, respectively. We found that the n4 locus, and especially the nodM and nodN genes, are involved in the production of the root hair deformation (Had) factor. NodM exhibits homology to amidotransferases, primarily to the D-glucosamine synthetase encoded by the glmS gene of Escherichia coli. We demonstrated that in E. coli the regulatory gene nodD together with luteolin can activate nod genes. On this basis we showed that nodM complemented an E. coli glmS- mutation, indicating that nodM can be considered as a glmS gene under plant signal control. Moreover, exogenously supplied D-glucosamine restored nodulation of Medicago by nodM mutants. Our data suggest that in addition to the housekeeping glmS gene of R. melioti, nodM as a second glmS copy provides glucosamine in sufficient amounts for the synthesis of the Had factor.
测定了苜蓿根瘤菌中结瘤盒基因座n4的核苷酸序列,发现它有6个基因,这些基因组成一个单一的转录单元,在诸如木犀草素等植物信号的诱导下表达。这些基因的突变影响了苜蓿上根瘤发育的早期步骤,但对苜蓿根瘤菌的另一宿主草木樨没有可检测到的影响。根据序列同源性,第一个开放阅读框(ORF)对应于豆科根瘤菌的nodM基因,最后一个对应于nodN基因。其他基因与迄今测序的任何基因都没有相似性,因此我们分别将它们命名为nolF、nolG、nolH和nolI。我们发现n4基因座,特别是nodM和nodN基因,参与根毛变形(Had)因子的产生。NodM与酰胺转移酶具有同源性,主要与大肠杆菌glmS基因编码的D-葡糖胺合成酶同源。我们证明,在大肠杆菌中,调节基因nodD与木犀草素一起可以激活结瘤基因。在此基础上,我们表明nodM可以互补大肠杆菌的glmS突变,这表明nodM可以被认为是受植物信号控制的glmS基因。此外,外源提供的D-葡糖胺恢复了nodM突变体对苜蓿的结瘤能力。我们的数据表明,除了苜蓿根瘤菌的看家基因glmS外,nodM作为第二个glmS拷贝,为Had因子的合成提供了足够量的葡糖胺。