Active Infection & Immunity

Utilizing environmental DNA to monitor bovine tuberculosis in UK deer populations at the wildlife-livestock interface.

In plain English

AI plain-English summary

Deer in Exmoor and the Quantock Hills are leaving DNA traces in soil and water that could reveal how bovine tuberculosis spreads between wildlife and cattle. Bovine tuberculosis (bTB) costs UK farmers millions each year and leads to the culling of thousands of cattle. Wildlife reservoirs—particularly deer—are suspected of transmitting *Mycobacterium bovis* to livestock, but tracking the bacterium in free-roaming animals is difficult. Current monitoring relies on testing dead or captured animals, which misses the full picture of where and how transmission occurs. This project aims to fill that gap by using environmental DNA (eDNA) to detect *M. bovis* directly from field samples. If successful, the method could give farmers and vets an early-warning system for bTB hotspots without needing to handle or cull animals. The same eDNA approach could also map deer biodiversity and reveal how changes in land use—such as shifting grazing patterns—bring cattle and deer into closer contact. This is applied field science with a clear practical target: reducing bTB transmission at the wildlife-livestock interface.

View original technical description
The proposed project is to utilize environmental DNA to monitor bovine tuberculosis (bTB) in UK deer populations at the wildlife-livestock interface. The key goals of the project are to define the limits of detection for Mycobacterium bovis (M. bovis) in both environmental and animal specimen samples, quantify the levels of M. bovis in the collected environmental and animal specimen samples, determine the biodiversity of the environmental samples and the geographic distribution of the species using DNA metabarcoding, and use a computational approach to explore how land-use changes among livestock farms may be leading to increased interactions between cattle and deer herds further leading to increased M. bovis transmissions. The proposed project will be conducted using a mixed methodology including field work, laboratory, and computational components. The proposed field work will be conducted in coordination with National Trust staff members at Exmoor National Park and Quantock Hills National Landscape. These sampling sites were selected due to their demonstrated high levels of bTB and combination of free- roaming wild deer and park-raised deer.

View the original record at the funder ↗

Researchers

Nicholas Willoughby (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Understanding Mycobacterium bovis transmission at the environmental-wildlife-livestock interface in Wales for enhanced bovine tuberculosis control
Exploring the richness of Mycobacterium bovis strain diversity to decipher the epidemiology of bovine tuberculosis ecology
Using Microbial Networks To Quantify Transmission Dynamics of Bovine Tuberculosis (Ref: 3992)
Investigating the Epidemiology of Bovine Tuberculosis in the European Badger
PredictinB statg Tus of dairy cows from mid infra-red spectral data using machine learning

Original classification

PhD Studentship (Basic)

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