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Colonisation dynamics and virulence of two clonal groups of multidrug-resistant Escherichia coli isolated from dogs
Institution:1. Pathology Queensland, Microbiology Department, Herston, QLD, Australia;2. University of Queensland Centre for Clinical Research, Herston, QLD, Australia;3. Griffith University, Southport, QLD, Australia;1. Queensland Children''s Medical Research Institute, The University of Queensland, Brisbane, Australia;2. Adult Cystic Fibrosis Centre, Department of Thoracic Medicine, The Prince Charles Hospital, Brisbane, Australia;3. School of Medicine, The University of Queensland, Brisbane, Australia;4. University of Queensland, UQ Centre for Clinical Research (UQCCR), Brisbane, Australia;5. QIMR Berghofer Medical Research Institute, Brisbane, Australia
Abstract:The study established the virulence potential of multidrug-resistant Escherichia coli (MDREC) isolates from nosocomial infections in hospitalised dogs. The isolates were resistant to fluoroquinolones, belonged to two distinct clonal groups (CG1 and CG2) and contained a plasmid-mediated AmpC (CMY-7) β-lactamase. CG1 isolates (n = 14) possessed two of 36 assayed extraintestinal virulence genes (iutA and traT) and belonged to phylogenetic group A, whereas CG2 isolates (n = 19) contained four such genes (iutA, ibeA, fimH and kpsMT K5) and belonged to group D. In a mouse gastrointestinal tract colonisation model, colonisation by index CG1 strain C1 was transient, in contrast to the index CG2 strain C2b, which persisted up to 40 days post-inoculation. In a mouse subcutaneous challenge model, both strains were less virulent than archetypal group B2 extraintestinal pathogenic E. coli (ExPEC) strain CFT073; strain C1 caused no systemic signs and strain C2b was lethal to only one of six mice. In a mouse urinary tract infection model, strain C2b colonised the mouse bladder over 2 logs higher compared to strain C1. Whilst both groups of canine MDREC appear less virulent than a reference human ExPEC strain, CG2 strains have greater capacity for colonisation and virulence.
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