FnrN controls symbiotic nitrogen fixation and hydrogenase activities in Rhizobium leguminosarum biovar viciae UPM791
- 1 September 1997
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 179 (17) , 5264-5270
- https://doi.org/10.1128/jb.179.17.5264-5270.1997
Abstract
Rhizobium leguminosarum bv. viciae UPM791 contains a second copy of the fnrN gene, which encodes a redox-sensitive transcriptional activator functionally homologous to Escherichia coli Fnr. This second copy (fnrN2) is located in the symbiotic plasmid, while fnrN1 is in the chromosome. Isolation and sequencing of the fnrN2 gene revealed that the deduced amino acid sequence of FnrN2 is 87.5% identical to the sequence of FnrN1, including a conserved cysteine-rich motif characteristic of Fnr-like proteins. Individual R. leguminosarum fnrN1 and fnrN2 mutants exhibited a Fix+ phenotype and near wild-type levels of nitrogenase and hydrogenase activities in pea (Pisum sativum L.) nodules. In contrast, an fnrN1 fnrN2 double mutant formed ineffective nodules lacking both nitrogenase and hydrogenase activities. Unlike the wild-type strain and single fnrN1 or fnrN2 mutants, the fnrN1 fnrN2 double mutant was unable to induce micro-oxic or bacteroid activation of the hypBFCDEX operon, which encodes proteins essential for hydrogenase synthesis. In the search for symbiotic genes that could be controlled by FnrN, a fixNOQP operon, putatively encoding a micro-oxically induced, bacteroid-specific cbb3-type terminal cytochrome oxidase, was isolated from strain UPM791 and partially sequenced. The fixNOQP operon was present in a single copy located in the symbiotic plasmid, and an anaerobox was identified in the fixN promoter region. Consistent with this, a fixNOQP9-lacZ fusion was shown to be highly induced in micro-oxic cells of the wild-type strain. A high level of micro-oxic induction was also observed in single fnrN1 and fnrN2 mutants, but no detectable induction was observed in the fnrN1 fnrN2 double mutant. The lack of expression of fixNOQP in the fnrN1 fnrN2 double mutant is likely to cause the observed Fix- phenotype. These data demonstrate that, contrary to the situation in other rhizobia, FnrN controls both hydrogenase and nitrogenase activities of R. leguminosarum bv. viciae UPM791 in the nodule and suggest that this strain lacks a functional fixK gene.Keywords
This publication has 52 references indexed in Scilit:
- Small mobilizable multi-purpose cloning vectors derived from the Escherichia coli plasmids pK18 and pK19: selection of defined deletions in the chromosome of Corynebacterium glutamicumPublished by Elsevier ,2003
- Rhizobium leguminosarum bv. viciae contains a second fnr/fixK‐like gene and an unusual fixL homologueMolecular Microbiology, 1996
- DNA Binding and Dimerization of the Fe−S-containing FNR Protein from Escherichia coli Are Regulated by OxygenJournal of Biological Chemistry, 1996
- Properties of FNR proteins substituted at each of the five cysteine residuesMolecular Microbiology, 1993
- Azorhizobium caulinodansNitrogen Fixation(nif/fix)Gene Regulation: Mutagenesis of thenifA─24/─12 Promoter Element, Characterization of antrA(rpoN)Gene, and Derivation of a ModelMolecular Plant-Microbe Interactions®, 1993
- The Rhizobium leguminosarum FnrN protein is functionally similar to Escherichia coli Fnr and promotes heterologous oxygen‐dependent activation of transcriptionMolecular Microbiology, 1992
- Regulation of nitrogen fixation in Azorhizobium caulinodans: identification of a fixK‐like gene, a positive regulator of nifAMolecular Microbiology, 1991
- A haemoprotein with kinase activity encoded by the oxygen sensor of Rhizobium melilotiNature, 1991
- Characterization of divergent NtrA‐dependent promoters in the anaerobically expressed gene cluster coding for hydrogenase 3 components of Escherichia coliMolecular Microbiology, 1990
- Model-Building of Fnr and FixK DNA-binding domains suggests a basis for specific DNA recognitionJournal of Molecular Recognition, 1989