| Literature DB >> 26934994 |
Ariadna Sanglas1, Vicenta Albarral2, Maribel Farfán3, J Gaspar Lorén4, M Carmen Fusté5.
Abstract
Two hundred and twenty-one strains representative of all Aeromonas species were characterized using the recA gene sequence, assessing its potential as a molecular marker for the genus Aeromonas. The inter-species distance values obtained demonstrated that recA has a high discriminatory power. Phylogenetic analysis, based on full-length gene nucleotide sequences, revealed a robust topology with clearly separated clusters for each species. The maximum likelihood tree showed the Aeromonas bestiarum strains in a well-defined cluster, containing a subset of four strains of different geographical origins in a deep internal branch. Data analysis provided strong evidence of recombination at the end of the recA sequences in these four strains. Intergenomic recombination corresponding to partial regions of the two adjacent genes recA and recX (248 bp) was identified between A. bestiarum (major parent) and Aeromonas eucrenophila (minor parent). The low number of recombinant strains detected (1.8%) suggests that horizontal flow between recA sequences is relatively uncommon in this genus. Moreover, only a few nucleotide differences were detected among these fragments, indicating that recombination has occurred recently. Finally, we also determined if the recombinant fragment could have influenced the structure and basic functions of the RecA protein, comparing models reconstructed from the translated amino acid sequences of our A. bestiarum strains with known Escherichia coli RecA structures.Entities:
Keywords: Aeromonas; Aeromonas bestiarum; Molecular marker; Protein prediction; Recombination; recA
Mesh:
Substances:
Year: 2016 PMID: 26934994 DOI: 10.1016/j.syapm.2016.01.003
Source DB: PubMed Journal: Syst Appl Microbiol ISSN: 0723-2020 Impact factor: 4.022