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Genomic Information on Linezolid-Resistant Sequence-Type 398 Livestock-Associated Methicillin-Resistant Staphylococcus aureus Isolated from a Pig

Authors
Lee, Gi YongSeong, Hoon JeSul, Woo JunYang, Soo-Jin
Issue Date
Jun-2021
Publisher
MARY ANN LIEBERT, INC
Keywords
ST398 LA-MRSA; linezolid resistance; cfr; whole-genome sequencing
Citation
FOODBORNE PATHOGENS AND DISEASE, v.18, no.6, pp 378 - 387
Pages
10
Journal Title
FOODBORNE PATHOGENS AND DISEASE
Volume
18
Number
6
Start Page
378
End Page
387
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/54069
DOI
10.1089/fpd.2020.2882
ISSN
1535-3141
1556-7125
Abstract
The frequent occurrence of sequence-type 398 (ST398) livestock-associated methicillin-resistant Staphylococcus aureus (LA-MRSA) in pigs has become a major public health concern owing to the increased zoonotic potential of the pathogen. Recently, a novel oxazolidinone resistance gene, chloramphenicol-florfenicol resistant (cfr), conferring multiresistance phenotypes to phenicols, lincosamides, oxazolidinones, pleuromutilins, and streptogramin A (PhLOPSA), has been found among ST398 LA-MRSA strains isolated from pigs. In this study, we report the first in silico genome analysis of a linezolid-resistant ST398 LA-MRSA strain, designated PJFA-521M, recovered from a pig in Korea. Genomic analyses revealed that the presence of the cfr gene was responsible for the observed linezolid resistance in the PJFA-521M strain. Moreover, newer antimicrobial resistance genes, such as the dfrG, aadE, spw, lsa(E), lnu(B), and fexA genes, were found in the PJFA-521M strain. In addition to the genetic elements for antimicrobial resistance, the carriage of various virulence genes for adherence, invasion, and immunomodulation was identified in the genome, especially within several mobile genetic elements (MGEs). The presence of multiple antimicrobial resistance genes and virulence genes on MGEs in the genome of a linezolid-resistant ST398 LA-MRSA should raise awareness regarding the use of other antimicrobial agents in pig farms and may also provide selective pressure for the prevalence of the cfr gene and the associated multidrug-resistant phenotype.
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생명공학대학 (시스템생명공학과)
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