Genomic Characterization of Antimicrobial Resistance, Virulence, and Phylogeny of the Genus .

Antibiotics (Basel)

Microbiology, Advanced Genomics and Infection Control Applications Laboratory (MAGICAL), Department of Health Systems Management, School of Public Health, Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer-Sheva 8410501, Israel.

Published: April 2020

is a ubiquitous Gram-negative microorganism, mostly found in the environment, which can cause opportunistic infections in humans. It is almost uniformly resistant to penicillins and cephalosporins through an AmpC-like β-lactamase enzyme class (OCH). We studied 130 assembled genomes, of which 5 were animal-derived isolates recovered in Israel, and 125 publicly available genomes. Our analysis focused on antimicrobial resistance (AMR) genes, virulence genes, and whole-genome phylogeny. We found that 76% of genomes harbored a β-lactamase gene variant, while 7% harbored another AmpC-like gene. No virulence genes other than lipopolysaccharide-associated genes were found. Core genome multilocus sequence typing clustered most samples to known species, but neither geographical clustering nor isolation source clustering were evident. When analyzing the distribution of different variants as well as of the -deficient samples, a clear phylogenomic clustering was apparent for specific species. The current analysis of the largest collection to date of genomes sheds light on the resistome, virulome, phylogeny, and species classification of this increasingly reported human pathogen. Our findings also suggest that deserves further characterization to underpin its evolution, taxonomy, and antimicrobial resistance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7235858PMC
http://dx.doi.org/10.3390/antibiotics9040177DOI Listing

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