Uncovering the genomic landscape of Mycobacterium bovis in Wales

Bovine tuberculosis (bTB), caused by the bacterium Mycobacterium bovis, is one of the most pressing animal health issues in Wales today. It negatively impacts cattle health, affects profitability and trade, and can decimate years of genetic improvement towards desirable production traits. It also imposes substantial financial, social, and psychological burdens on farming communities. Eradication of bTB requires an understanding of local transmission pathways to target effective disease-control interventions. In this study, we characterised the genomic diversity of M. bovis across Wales by analysing the genome sequence of 379 M. bovis isolates obtained from culture-positive animals in Wales in 2021. Analyses uncovered three prevalent clusters that are geographically distinct. A further three clusters containing fewer isolates were also geographically separated, two of which had particularly large SNP distances from most other Welsh isolates, suggesting independent introductions of M. bovis strains that are not endemic to Wales. Fine-scale and epidemiologically relevant genetic structuring was identified within the six main clusters, indicating region-specific evolution, which can drive local disease dynamics. Finally, SNPs were identified in coding genes that have the potential for important advantageous physiological consequences that may impact host-pathogen interactions and necessitate further investigation.

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Publication Details

Journal
Scientific Reports
Published
2026-09-13
DOI
https://doi.org/10.1038/s41598-026-57014-2
Primary Topic
Tuberculosis Research and Epidemiology
Type
article
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article

Uncovering the genomic landscape of Mycobacterium bovis in Wales

Richard J. Ellis, Nicholas J Dimonaco, Jessica C. A. Friedersdorff, Terry Galloway et al.
Scientific Reports
Tuberculosis Research and Epidemiology
article

Uncovering the genomic landscape of Mycobacterium bovis in Wales

Richard J. Ellis, Nicholas J Dimonaco, Jessica C. A. Friedersdorff, Terry Galloway, Eleftheria Palkopoulou, R. Glyn Hewinson, Amanda J. Gibson, Amy J. E. Healey, Cate L. Williams, James Strong
article en

Abstract

Bovine tuberculosis (bTB), caused by the bacterium Mycobacterium bovis, is one of the most pressing animal health issues in Wales today. It negatively impacts cattle health, affects profitability and trade, and can decimate years of genetic improvement towards desirable production traits. It also imposes substantial financial, social, and psychological burdens on farming communities. Eradication of bTB requires an understanding of local transmission pathways to target effective disease-control interventions. In this study, we characterised the genomic diversity of M. bovis across Wales by analysing the genome sequence of 379 M. bovis isolates obtained from culture-positive animals in Wales in 2021. Analyses uncovered three prevalent clusters that are geographically distinct. A further three clusters containing fewer isolates were also geographically separated, two of which had particularly large SNP distances from most other Welsh isolates, suggesting independent introductions of M. bovis strains that are not endemic to Wales. Fine-scale and epidemiologically relevant genetic structuring was identified within the six main clusters, indicating region-specific evolution, which can drive local disease dynamics. Finally, SNPs were identified in coding genes that have the potential for important advantageous physiological consequences that may impact host-pathogen interactions and necessitate further investigation.

Scientific ReportsVol. 16(1)
Queen's University Belfast (GB), Aberystwyth University (GB), Animal and Plant Health Agency (GB), Glangwili General Hospital (GB)
Openalex Percentile: Top 11%
Tuberculosis Research and Epidemiology
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