Mutants of Rhizobium leguminosarum bv. viciae unable to respire via the cytochrome aa3 pathway were identified by the inability to oxidize N,N*-dimethyl-p-phenylenediamine. Two mutants which were complemented by cosmid pIJ1942 from an R. leguminosarum clone bank were identified. Although pea nodules induced by these mutants contained many bacteroids, no symbiotic nitrogen fixation was detected. Heme staining of cellular proteins revealed that all cytochrome c-type heme proteins were absent. These mutants lacked spectroscopically detectable cytochrome c, but cytochromes aa3 and d were present, the latter at a higherthan- normal level. DNA sequence analysis of complementing plasmids revealed four apparently cotranscribed open reading f...
Random and site-directed Tn5-induced mutagenesis of Bradyrhizobium japonicum yielded two mutations, ...
Following transposon mutagenesis of Rhizobium leguminosarum biovar viciae, a mutant altered in its c...
Rhizobia represent a diverse group of gram-negative bacteria capable of fixing atmospheric nitrogen...
A Tn5-induced mutant of Rhizobium leguminosarum bv. viciae could not form nitrogen-fixing nodules on...
leguminosarum. symbiotic nitrogen fixation in Rhizobium involved in cytochrome c biogenesis and Char...
The reduction of atmospheric nitrogen (N2) to ammonia (N2 fixation) by bacteria (rhizobia) living sy...
Ten independently generated mutants of Rhizobium leguminosarum biovar phaseoli CFN42 isolated after ...
We isolated a Tn5-induced Rhizobium tropici mutant that has enhanced capacity to oxidize N,N-dimethy...
AbstractSite-specific mutations were contructed within Bradyrhizobium japonicum fixA, B and C region...
Rhizobium japonicum strains 3I1b110 and 61A76 were mutagenized to obtain 25 independently derived mu...
<p>Nitrogen <em>fix</em> ation by <em>Rhizobium</em> and <em>Bra...
Random transposon TnS mutagenesis of Bradyrhizobium sp. (Arachis) strain NC92, a member of the cowpe...
Bacteria of the genera <u>Rhizobium</u> and <u>Bradyrhizobium</u> are unique in their quality to for...
International audienceRhizobia and legume plants establish symbiotic associations resulting in the f...
GmcA is a FAD-containing enzyme belonging to the GMC (glucose-methanol-choline oxidase) family of ox...
Random and site-directed Tn5-induced mutagenesis of Bradyrhizobium japonicum yielded two mutations, ...
Following transposon mutagenesis of Rhizobium leguminosarum biovar viciae, a mutant altered in its c...
Rhizobia represent a diverse group of gram-negative bacteria capable of fixing atmospheric nitrogen...
A Tn5-induced mutant of Rhizobium leguminosarum bv. viciae could not form nitrogen-fixing nodules on...
leguminosarum. symbiotic nitrogen fixation in Rhizobium involved in cytochrome c biogenesis and Char...
The reduction of atmospheric nitrogen (N2) to ammonia (N2 fixation) by bacteria (rhizobia) living sy...
Ten independently generated mutants of Rhizobium leguminosarum biovar phaseoli CFN42 isolated after ...
We isolated a Tn5-induced Rhizobium tropici mutant that has enhanced capacity to oxidize N,N-dimethy...
AbstractSite-specific mutations were contructed within Bradyrhizobium japonicum fixA, B and C region...
Rhizobium japonicum strains 3I1b110 and 61A76 were mutagenized to obtain 25 independently derived mu...
<p>Nitrogen <em>fix</em> ation by <em>Rhizobium</em> and <em>Bra...
Random transposon TnS mutagenesis of Bradyrhizobium sp. (Arachis) strain NC92, a member of the cowpe...
Bacteria of the genera <u>Rhizobium</u> and <u>Bradyrhizobium</u> are unique in their quality to for...
International audienceRhizobia and legume plants establish symbiotic associations resulting in the f...
GmcA is a FAD-containing enzyme belonging to the GMC (glucose-methanol-choline oxidase) family of ox...
Random and site-directed Tn5-induced mutagenesis of Bradyrhizobium japonicum yielded two mutations, ...
Following transposon mutagenesis of Rhizobium leguminosarum biovar viciae, a mutant altered in its c...
Rhizobia represent a diverse group of gram-negative bacteria capable of fixing atmospheric nitrogen...