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Heuristic Mining of Hierarchical Genotypes and Accessory Genome Loci in Bacterial Populations
Published on: December 7, 2021
A shared population of epidemic methicillin-resistant Staphylococcus aureus 15 circulates in humans and companion
Ewan M Harrison1, Lucy A Weinert1, Matthew T G Holden2
1Department of Veterinary Medicine, University of Cambridge, Cambridge, United Kingdom.
Unlabelled:
Methicillin-resistant Staphylococcus aureus (MRSA) is a global human health problem causing infections in both hospitals and the community. Companion animals, such as cats, dogs, and horses, are also frequently colonized by MRSA and can become infected. We sequenced the genomes of 46 multilocus sequence type (ST) 22 MRSA isolates from cats and dogs in the United Kingdom and compared these to an extensive population framework of human isolates from the same lineage. Phylogenomic analyses showed that all companion animal isolates were interspersed throughout the epidemic MRSA-15 (EMRSA-15) pandemic clade and clustered with human isolates from the United Kingdom, with human isolates basal to those from companion animals, suggesting a human source for isolates infecting companion animals. A number of isolates from the same veterinary hospital clustered together, suggesting that as in human hospitals, EMRSA-15 isolates are readily transmitted in the veterinary hospital setting. Genome-wide association analysis did not identify any host-specific single nucleotide polymorphisms (SNPs) or virulence factors. However, isolates from companion animals were significantly less likely to harbor a plasmid encoding erythromycin resistance. When this plasmid was present in animal-associated isolates, it was more likely to contain mutations mediating resistance to clindamycin. This finding is consistent with the low levels of erythromycin and high levels of clindamycin used in veterinary medicine in the United Kingdom. This study furthers the "one health" view of infectious diseases that the pathogen pool of human and animal populations are intrinsically linked and provides evidence that antibiotic usage in animal medicine is shaping the population of a major human pathogen.
Importance:
Methicillin-resistant Staphylococcus aureus (MRSA) is major problem in human medicine. Companion animals, such as cats, dogs, and horses, can also become colonized and infected by MRSA. Here, we demonstrate that a shared population of an important and globally disseminated lineage of MRSA can infect both humans and companion animals without undergoing host adaptation. This suggests that companion animals might act as a reservoir for human infections. We also show that the isolates from companion animals have differences in the presence of certain antibiotic resistance genes. This study furthers the "one health" view of infectious diseases by demonstrating that the pool of MRSA isolates in the human and animal populations are shared and highlights how different antibiotic usage patterns between human and veterinary medicine can shape the population of bacterial pathogens.
Insights
Methicillin-resistant Staphylococcus aureus (MRSA) in pets and people are linked, with pets potentially acting as reservoirs. Antibiotic use in veterinary medicine influences MRSA strains, impacting human health.
Area of Science:
- Veterinary Microbiology
- Infectious Diseases
- Genomics
Background:
- Methicillin-resistant Staphylococcus aureus (MRSA) poses a significant global health threat in both human and veterinary medicine.
- Companion animals are frequently colonized and infected by MRSA, raising concerns about disease transmission and reservoirs.
Purpose of the Study:
- To investigate the genomic relationship between MRSA isolates from companion animals and humans.
- To determine if companion animals act as a reservoir for human MRSA infections.
- To analyze the impact of antibiotic usage in veterinary medicine on MRSA populations.
Main Methods:
- Whole-genome sequencing of 46 MRSA isolates from UK cats and dogs.
- Phylogenomic analysis to compare animal isolates with a human isolate population framework.
- Genome-wide association analysis to identify host-specific adaptations and antibiotic resistance genes.
Main Results:
- MRSA isolates from companion animals were interspersed within the epidemic MRSA-15 (EMRSA-15) pandemic clade, clustering with human isolates.
- Human isolates were basal to companion animal isolates, suggesting a human-to-animal transmission source.
- No host-specific SNPs or virulence factors were identified, indicating a lack of host adaptation.
- Animal-associated MRSA isolates were less likely to harbor erythromycin resistance plasmids, but more likely to have clindamycin resistance mutations when the plasmid was present.
Conclusions:
- Companion animals and humans share a common MRSA population, supporting a 'one health' perspective on infectious diseases.
- Companion animals may serve as a reservoir for MRSA, facilitating transmission to humans.
- Antibiotic usage patterns in veterinary medicine can shape the evolution of MRSA, influencing strains relevant to human health.
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