Genomic characterization of antimicrobial resistance in 61 aquatic bacterial isolates

Antimicrobial resistance (AMR) in pathogens important to aquatic animal health is of increasing concern but vastly understudied. Antimicrobial therapy is used to both treat and prevent bacterial disease in fish and is critical for a viable aquaculture industry and for maintenance of wild fish popula...

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Published inJournal of veterinary diagnostic investigation p. 10406387241241042
Main Authors Eckstrand, Chrissy D, Torrevillas, Brandi K, Wolking, Rebecca M, Francis, Marla, Goodman, Laura B, Ceric, Olgica, Alexander, Trevor L, Snekvik, Kevin R, Burbick, Claire R
Format Journal Article
LanguageEnglish
Published United States 01.05.2024
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Summary:Antimicrobial resistance (AMR) in pathogens important to aquatic animal health is of increasing concern but vastly understudied. Antimicrobial therapy is used to both treat and prevent bacterial disease in fish and is critical for a viable aquaculture industry and for maintenance of wild fish populations. Unfortunately, phenotypic antimicrobial susceptibility testing is technically difficult for bacteria recovered from aquatic animal hosts resulting in challenges in resistance monitoring using traditional methods. Whole-genome sequencing provides an appealing methodology for investigation of putative resistance. As part of the ongoing efforts of the FDA CVM Vet-LIRN to monitor AMR, source laboratories cultured and preliminarily identified pathogenic bacteria isolated from various fish species collected in 2019 from across the United States. Sixty-one bacterial isolates were evaluated using whole-genome sequencing. We present here the assembled draft genomes, AMR genes, predicted resistance phenotypes, and virulence factors of the 61 isolates and discuss concurrence of the identifications made by source laboratories using matrix-assisted laser desorption/time-of-flight mass spectrometry.
ISSN:1943-4936
DOI:10.1177/10406387241241042