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1.
Braz. j. microbiol ; 49(4): 703-713, Oct.-Dec. 2018. tab, graf
Article Dans Anglais | LILACS | ID: biblio-974305

Résumé

ABSTRACT The leguminous inoculation with nodule-inducing bacteria that perform biological nitrogen fixation is a good example of an "eco-friendly agricultural practice". Bradyrhizobium strains BR 3267 and BR 3262 are recommended for cowpea (Vigna unguiculata) inoculation in Brazil and showed remarkable responses; nevertheless neither strain was characterized at species level, which is our goal in the present work using a polyphasic approach. The strains presented the typical phenotype of Bradyrhizobium with a slow growth and a white colony on yeast extract-mannitol medium. Strain BR 3267 was more versatile in its use of carbon sources compared to BR 3262. The fatty acid composition of BR 3267 was similar to the type strain of Bradyrhizobium yuanmingense; while BR 3262 was similar to Bradyrhizobium elkanii and Bradyrhizobium pachyrhizi. Phylogenetic analyses based on 16S rRNA and three housekeeping genes placed both strains within the genus Bradyrhizobium: strain BR 3267 was closest to B. yuanmingense and BR 3262 to B. pachyrhizi. Genome average nucleotide identity and DNA-DNA reassociation confirmed the genomic identification of B. yuanmingense BR 3267 and B. pachyrhizi BR 3262. The nodC and nifH gene analyses showed that strains BR 3267 and BR 3262 hold divergent symbiotic genes. In summary, the results indicate that cowpea can establish effective symbiosis with divergent bradyrhizobia isolated from Brazilian soils.


Sujets)
Bradyrhizobium/isolement et purification , Bradyrhizobium/génétique , Inoculants agricoles/isolement et purification , Inoculants agricoles/génétique , Vigna/microbiologie , Phylogenèse , Symbiose , Brésil , ADN bactérien/génétique , ARN ribosomique 16S/génétique , Génome bactérien , Évolution moléculaire , Bradyrhizobium/classification , Bradyrhizobium/physiologie , Génomique , Nodules racinaires de plante/microbiologie , Inoculants agricoles/classification , Inoculants agricoles/physiologie , Vigna/physiologie
2.
Braz. j. microbiol ; 47(4): 783-784, Oct.-Dec. 2016.
Article Dans Anglais | LILACS, VETINDEX | ID: biblio-1469630

Résumé

The strain BR 3262 was isolated from nodule of cowpea (Vigna unguiculata L. Walp) growing in soil of the Atlantic Forest area in Brazil and it is reported as an efficient nitrogen fixing bacterium associated to cowpea. Firstly, this strain was assigned as Bradyrhizobium elkanii, however, recently a more detailed genetic and molecular characterization has indicated it could be a Bradyrhizobium pachyrhizi species. We report here the draft genome sequence of B. pachyrhizi strain BR 3262, an elite bacterium used as inoculant for cowpea. The whole genome with 116 scaffolds, 8,965,178 bp and 63.8% of C+G content for BR 3262 was obtained using Illumina MiSeq sequencing technology. Annotation was added by the RAST prokaryotic genome annotation service and shown 8369 coding sequences, 52 RNAs genes, classified in 504 subsystems.


Sujets)
Bradyrhizobium/classification , Bradyrhizobium/génétique , Fixation de l'azote , Vigna/microbiologie , Nodulation racinaire
3.
Braz. j. microbiol ; 47(4): 781-782, Oct.-Dec. 2016.
Article Dans Anglais | LILACS, VETINDEX | ID: biblio-1469631

Résumé

The strain BR 3267 is a nitrogen-fixing symbiotic bacteria isolated from soil of semi-arid area of Brazilian Northeast using cowpea as the trap plant. This strain is used as commercial inoculant for cowpea and presents high efficient in nitrogen fixation as consequence of its adaptation potential to semi-arid conditions. We report here the draft genome sequence of Bradyrhizobium sp. strain BR 3267, an elite bacterium used as inoculant for cowpea. Whole genome sequencing of BR 3267 using Illumina MiSeq sequencing technology has 55 scaffolds with a total genome size of 7,904,309 bp and C+G 63%. Annotation was added by the RAST prokaryotic genome annotation service and has shown 7314 coding sequences and 52 RNA genes.


Sujets)
Bradyrhizobium , Nodulation racinaire/génétique , Vigna/génétique , Vigna/microbiologie , Fixation de l'azote
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