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Occurrence and Genomic Characterization of Two MCR-1-Producing Escherichia coli Isolates from the Same Mink Farmer
Beiwen Zheng1, Hao Xu1, Chen Huang1,2
1Collaborative Innovation Center for Diagnosis and Treatment of Infectious Diseases, State Key Laboratory for Diagnosis and Treatment of Infectious Diseases, The First Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou, China.
Abstract:
The spread of colistin resistance gene mcr-1 at the animal-human interface remains largely unknown. This work aimed to investigate the molecular characteristics of two extended-spectrum-β-lactamase (ESBL)-producing Escherichia coli strains with mcr-1, i.e., strains H8 and H9, isolated from the same mink farmer. In this study, five mcr-positive E. coli strains were isolated from the mink farm. Pulsed-field gel electrophoresis (PFGE) and multilocus sequence typing (MLST) identified two genetically unrelated MCR-1 producers (H8 and H9) from the same farmer and two clonally related MCR-1-positive isolates (M5 and M6) from two different mink samples. Additionally, a mcr-1 variant, designated mcr-1.12, was identified in isolate M4. MIC determination revealed that all of the MCR-producing strains exhibited multiresistant phenotypes but showed susceptibility to imipenem, meropenem, amikacin, and tigecycline. Replicon typing showed that mcr-1 was associated with IncHI2 plasmids in 4 cases, while the gene was located on an IncI2 plasmid in 1 case. PacBio sequencing and plasmid analysis confirmed that the mcr-1 gene was located on an ∼204-kb IncHI2 plasmid in H8 and was carried by an ∼61-kb IncI2 plasmid in H9. To our knowledge, this work represents the first report of the occurrence of MCR-producing isolates from mink. Moreover, our report also describes the coexistence of two different MCR-1 producers in the same farmer. It highlights that fur farms can be reservoirs of mcr-1 genes. The identification of mcr-carrying plasmids on a fur farm is of potential public health importance, as it suggests that mcr is widespread in the animal husbandry industry.IMPORTANCE Colistin resistance is a real threat for both human and animal health. The mobile colistin resistance gene mcr has contributed to the persistence and transmission of colistin resistance at the interfaces of animals, humans, and ecosystems. Although mcr genes have usually been recovered from food animals, patients, and healthy humans, transmission of mcr genes at the animal-human interface remains largely unknown. This was the first study to isolate and characterize MCR-producing isolates from mink, as well as to report the coexistence of two different MCR-1 producers in the same farmer. The characterization and analysis of two MCR-1-producing E. coli isolates may have important implications for comprehension of the transmission dynamics of these bacteria. We emphasize the importance of improved multisectorial surveillance of colistin-resistant E. coli in this region.
Insights
The first study to find colistin resistance gene mcr-1 in mink highlights fur farms as reservoirs. This discovery emphasizes the need for enhanced surveillance of mcr-1 producing E. coli in animal husbandry to protect public health.
Area of Science:
- Microbiology
- Genetics
- Public Health
Background:
- The spread of colistin resistance gene, mcr-1, at the animal-human interface is not well understood.
- Colistin resistance poses a significant threat to both human and animal health.
- Mobile colistin resistance genes like mcr-1 contribute to the persistence and transmission of resistance across animal, human, and environmental interfaces.
Purpose of the Study:
- To investigate the molecular characteristics of extended-spectrum-β-lactamase (ESBL)-producing Escherichia coli strains carrying the mcr-1 gene, isolated from a mink farmer.
- To identify and characterize mcr-1 producing E. coli strains from mink and assess their potential as reservoirs for antimicrobial resistance.
Main Methods:
- Isolation and identification of mcr-1 positive E. coli strains from mink and a mink farmer.
- Pulsed-field gel electrophoresis (PFGE) and multilocus sequence typing (MLST) for genetic relatedness.
- MIC determination for antimicrobial susceptibility testing.
- Replicon typing and PacBio sequencing for plasmid analysis and characterization of mcr-1 gene location.
Main Results:
- Five mcr-1 positive E. coli strains were isolated, including two genetically unrelated strains (H8 and H9) from the same farmer and two related strains (M5 and M6) from mink.
- A mcr-1 variant, mcr-1.12, was identified in isolate M4.
- All MCR-producing strains were multidrug-resistant but susceptible to imipenem, meropenem, amikacin, and tigecycline.
- The mcr-1 gene was primarily located on IncHI2 plasmids (4 isolates) and once on an IncI2 plasmid (1 isolate).
- Strain H8 carried mcr-1 on an approximately 204-kb IncHI2 plasmid, while H9 carried it on an approximately 61-kb IncI2 plasmid.
Conclusions:
- This study is the first to report MCR-producing isolates from mink, identifying fur farms as potential reservoirs for mcr-1 genes.
- The coexistence of different MCR-1 producers within the same farmer highlights potential transmission dynamics.
- The presence of mcr-carrying plasmids on fur farms is of public health importance, suggesting widespread dissemination in animal husbandry.
- Enhanced multisectorial surveillance of colistin-resistant E. coli in this region is crucial.
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