Emergent multidrug-resistant nontyphoidal Salmonella serovars isolated from poultry in Brazil coharboring blaCTX-M-2 and qnrB or blaCMY-2 in large plasmids
The number of foodborne gastroenteritis caused by nontyphoidal Salmonella (NTS) worldwide is estimated to be 80.3 million each year. Currently, antimicrobial-resistant NTS disseminated in the animal environment increases the risk of aggravated foodborne outbreaks. Poultry are important source of foo...
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Veröffentlicht in: | Diagnostic microbiology and infectious disease 2019-09, Vol.95 (1), p.93-98 |
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Zusammenfassung: | The number of foodborne gastroenteritis caused by nontyphoidal Salmonella (NTS) worldwide is estimated to be 80.3 million each year. Currently, antimicrobial-resistant NTS disseminated in the animal environment increases the risk of aggravated foodborne outbreaks. Poultry are important source of foodborne NTS infections. This study was conducted to evaluate the phenotypic and genotypic characteristics of 83 NTS isolates from poultry, classified within 36 different serovars. The most prevalent serovar was S. Schwarzengrund (10/83), from which 8/10 were multidrug resistant (MDR). The antimicrobial susceptibility testing showed a total of 18 MDR isolates, from which 8/18 coharbored blaCTX-M-2 and qnrB5. The genes qnrB5, blaCTX-M-2, qnrB2, or blaCMY-2 were also found alone in other MDR isolates. All resistance genes were harbored in large plasmids, ranging from 30 to 270 kb. The pColE replicon was present in 8 MDR isolates; however it was not associated with resistance. ISCR1 and class I integron structures were always associated with blaCTX-M-2.
•Genetic characterization of multidrug resistant (MDR) Salmonella isolates•We identified 18 MDR isolates from 7 different serovars isolated in farms and slaughterhouses.•Large plasmids (approx. 280 kb) were identified harboring the resistance genes.•qnrB (quinolones resistance) and blaCTX-M2 (β-lactamase resistance) were in the same plasmids.•Emerging serovar S. Heidelberg carrying blaCMY-2 was only susceptible to carbapenem. |
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ISSN: | 0732-8893 1879-0070 |
DOI: | 10.1016/j.diagmicrobio.2019.04.003 |