@article{mbs:/content/journal/micro/10.1099/00221287-147-4-981, author = "Laguerre, Gisèle and Nour, Sarah M. and Macheret, Valérie and Sanjuan, Juan and Drouin, Pascal and Amarger, Noëlle", title = "Classification of rhizobia based on nodC and nifH gene analysis reveals a close phylogenetic relationship among Phaseolus vulgaris symbiontsThe GenBank accession numbers for the sequences reported in this paper are AF217261 through AF217272 for nodC and AF218126, AF275670 and AF275671 for nifH.", journal= "Microbiology", year = "2001", volume = "147", number = "4", pages = "981-993", doi = "https://doi.org/10.1099/00221287-147-4-981", url = "https://www.microbiologyresearch.org/content/journal/micro/10.1099/00221287-147-4-981", publisher = "Microbiology Society", issn = "1465-2080", type = "Journal Article", keywords = "Sym genes, symbiotic genes", keywords = "phylogeny", keywords = "Rhizobium", keywords = "common bean", keywords = "nitrogen fixation gene", keywords = "nodulation gene", abstract = "The nodC and nifH genes were characterized in a collection of 83 rhizobial strains which represented 23 recognized species distributed in the genera Rhizobium, Sinorhizobium, Mesorhizobium and Bradyrhizobium, as well as unclassified rhizobia from various host legumes. Conserved primers were designed from available nucleotide sequences and were able to amplify nodC and nifH fragments of about 930 bp and 780 bp, respectively, from most of the strains investigated. RFLP analysis of the PCR products resulted in a classification of these rhizobia which was in general well-correlated with their known host range and independent of their taxonomic status. The nodC and nifH fragments were sequenced for representative strains belonging to different genera and species, most of which originated from Phaseolus vulgaris nodules. Phylogenetic trees were constructed and revealed close relationships among symbiotic genes of the Phaseolus symbionts, irrespective of their 16S-rDNA-based classification. The nodC and nifH phylogenies were generally similar, but cases of incongruence were detected, suggesting that genetic rearrangements have occurred in the course of evolution. The results support the view that lateral genetic transfer across rhizobial species and, in some instances, across Rhizobium and Sinorhizobium genera plays a role in diversification and in structuring the natural populations of rhizobia.", }