Identification and evolution of ICE-PmuST394: a novel integrative conjugative element in Pasteurella multocida ST394

Author:

Roy Chowdhury Piklu1ORCID,Alhamami Tamara2,Venter Henrietta3ORCID,Veltman Tania2,Carr Mandi2,Mollinger Joanne4,Trott Darren J2,Djordjevic Steven P1ORCID

Affiliation:

1. Australian Institute for Microbiology and Infection, University of Technology Sydney , City Campus, Ultimo, NSW 2007 , Australia

2. Australian Centre for Antimicrobial Resistance Ecology, School of Animal and Veterinary Sciences, University of Adelaide , Roseworthy Campus, Roseworthy, SA 5371 , Australia

3. Clinical Health Sciences, University of South Australia , Adelaide, SA 5000 , Australia

4. Biosecurity Sciences Laboratory, Department of Agriculture and Fisheries, Health and Food Sciences Precinct , Coopers Plains, QLD 4108 , Australia

Abstract

Abstract Background The emergence of macrolide and tetracycline resistance within Pasteurella multocida isolated from feedlot cattle and the dominance of ST394 in Australia was reported recently. Objectives To establish the genetic context of the resistance genes in P. multocida 17BRD-035, the ST394 reference genome, and conduct a molecular risk assessment of their ability to disperse laterally. Methods A bioinformatic analysis of the P. multocida 17BRD-035 genome was conducted to determine if integrative conjugative elements (ICEs) carrying resistance genes, which hamper antibiotic treatment options locally, are in circulation in Australian feedlots. Results A novel element, ICE-PmuST394, was characterized in P. multocida 17BRD-035. It was also identified in three other isolates (two ST394s and a ST125) in Australia and is likely present in a genome representing P. multocida ST79 from the USA. ICE-PmuST394 houses a resistance module carrying two variants of the blaROB gene, blaROB-1 and blaROB-13, and the macrolide esterase gene, estT. The resistance gene combination on ICE-PmuST394 confers resistance to ampicillin and tilmicosin, but not to tulathromycin and tildipirosin. Our analysis suggests that ICE-PmuST394 is circulating both by clonal expansion and horizontal transfer but is currently restricted to a single feedlot in Australia. Conclusions ICE-PmuST394 carries a limited number of unusual antimicrobial resistance genes but has hotspots that facilitate genomic recombination. The element is therefore amenable to hosting more resistance genes, and therefore its presence (or dispersal) should be regularly monitored. The element has a unique molecular marker, which could be exploited for genomic surveillance purposes locally and globally.

Funder

Meat & Livestock Australia

University of Adelaide

Australian Centre for Genomic Epidemiological Microbiology

Department of Primary Industries and the University of Technology Sydney

Publisher

Oxford University Press (OUP)

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