Exploring the epidemiology of mcr genes, genetic context and plasmids in Enterobacteriaceae originating from pigs and humans on farms in Thailand

Author:

Leangapichart Thongpan1,Stosic Milan S1,Hickman Rachel A23,Lunha Kamonwan4,Jiwakanon Jatesada5,Angkititrakul Sunpetch5,Magnusson Ulf4ORCID,Van Boeckel Thomas P67,Järhult Josef D3,Sunde Marianne1

Affiliation:

1. Section for Food Safety and Animal Health Research, Norwegian Veterinary Institute , Ås , Norway

2. Department of Medical Biochemistry and Microbiology, Zoonosis Science Center, Uppsala University , Uppsala , Sweden

3. Department of Medical Sciences, Zoonosis Science Center, Uppsala University , Uppsala , Sweden

4. Department of Clinical Sciences, Swedish University of Agricultural Sciences , Uppsala , Sweden

5. Research Group for Animal Health Technology, Faculty of Veterinary Medicine, Khon Kaen University , Khon Kaen , Thailand

6. Health Geography and Policy Group, ETH Zurich , Zurich , Switzerland

7. Center for Diseases Dynamics Economics & Policy , Washington, DC , USA

Abstract

Abstract Objectives In veterinary medicine, colistin has been widely used as therapeutic and prophylactic agent, and for growth promotion. However, colistin has been re-introduced into treatment of human MDR bacterial infections. We assessed the characteristics and spread of plasmid-borne colistin resistance among healthy pigs, workers with animal-contact and their household members in Thailand. Methods WGS and MIC data of 146 mcr-positive isolates from a cross-sectional One Health study were analysed. Long-read sequencing and conjugation were performed for selected isolates. Results mcr-carrying isolates were detected in 38% of pooled-pig samples and 16% of human faecal samples. Of 143 Escherichia coli and three Escherichia fergusonii, mcr-1, mcr-3, and mcr-9 variants were identified in 96 (65.8%), 61 (41.8%) and one (0.7%) isolate, respectively. Twelve E. coli co-harboured two mcr variants (mcr-1 and mcr-3). Clonal transmission was detected in five out of 164 farms. mcr-1 was mostly harboured by epidemic IncX4 and IncHI1 plasmids (89.9%). Conversely, mcr-3 was harboured by a range of different plasmids. Comparative plasmid studies suggested IncP and IncFII plasmids as possible endemic mcr-3 plasmids in Asian countries. Moreover, mcr-3 was associated with different mobile genetic elements including TnAs2, ISKpn40 and IS26/15DI. Detected genetic signatures (DRs) indicated recent mcr-3 transpositions, underlining the mobilizable nature of the mcr-3 cassette. Conclusions The epidemiology of mcr and the possible evolution of successful plasmids and transposition modules should be carefully monitored. Of special concern is the growing number of different horizontal gene transferring pathways encompassing various transposable modules the mcr genes can be shared between bacteria.

Funder

Joint Programming Initiative for Antimicrobial Resistance

Norwegian Veterinary Institute

Publisher

Oxford University Press (OUP)

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology,Microbiology (medical)

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