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Rapid and comprehensive data sharing is vital to the transparency and actionability of wildlife infectious disease research and surveillance. Unfortunately, most best practices for publicly sharing these data are focused on pathogen determination and genetic sequence data. Other facets of wildlife disease data - particularly negative results - are often withheld or, at best, summarized in a descriptive table with limited metadata. Here, we propose a minimum data and metadata reporting standard for wildlife disease studies. Our data standard identifies a set of 40 data fields (9 required) and 24 metadata fields (7 required) sufficient to standardize and document a dataset consisting of records disaggregated to the finest possible spatial, temporal, and taxonomic scale. We illustrate how this standard is applied to an example study, which documented a novel alphacoronavirus found in bats in Belize. Finally, we outline best practices for how data should be formatted for optimal re-use, and how researchers can navigate potential safety concerns around data sharing.
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http://dx.doi.org/10.1038/s41597-025-05332-x | DOI Listing |
J Wildl Dis
September 2025
Minnesota Center for Prion Research and Outreach, University of Minnesota, 1971 Commonwealth Avenue, Saint Paul, Minnesota 55108, USA.
Effective biosecurity practices are essential for mitigating the risks of pathogen transmission in human-wildlife interactions, yet it is unclear how infection control policies are put into action by those working with wildlife. We evaluated biosecurity practices among professionals working with cervids in the US and Canada via an electronic survey conducted between March 2024 and June 2024. The objectives were to identify pathogens of concern, describe current biosecurity protocols, evaluate the appropriateness of disinfecting practices, and explore associations between biosecurity practices and factors such as profession, regional disease status, and the nature of interactions with cervids.
View Article and Find Full Text PDFInt J Parasitol
September 2025
School of Public Health, University of Alberta, 357 South Academic Building, Edmonton, Alberta, Canada T6G 2G7. Electronic address:
Whirling disease is a debilitating disease of Rainbow Trout caused by Myxobolus cerebralis. The parasite invasion leads to skeletal deformities, neurological impairment, and high mortality. Since its introduction to North America, M.
View Article and Find Full Text PDFVet Parasitol
August 2025
USDA-ARS, Knipling-Bushland U S. Livestock Insects Research Laboratory, Kerrville, TX 78028, United States. Electronic address:
Ixodids transmit a variety of disease-causing agents that afflict humans, livestock, companion animals, and wildlife, as well as reducing meat and milk yields, reproduction, hide quality, and occasionally inducing death from exsanguination. While the primary control tactic has been application of conventional synthetic acaricides, resistance to many of those products has occurred among various ixodid species. This development has instigated searches for alternative control tactics, such as growth regulators, bioactive animal and botanical substances, vaccines, biological control, and silica-based dusts.
View Article and Find Full Text PDFFront Vet Sci
August 2025
Department of Microbiology, Immunology, and Pathology, Colorado State University, Fort Collins, CO, United States.
Bluetongue virus (BTV) and epizootic hemorrhagic disease virus (EHDV) are two viruses belonging to the genus that are transmitted via insect vector, the biting midge, causing disease in domestic and wild ruminants. These infections can lead to significant morbidity, mortality, and production losses in livestock, with economic consequences for cattle and sheep industries. Despite their growing impact due to environmental and anthropogenic changes, little is known of the prevalence of these viruses in North American bison ().
View Article and Find Full Text PDFGlob Bioeth
September 2025
Instituto de Investigaciones Filosóficas, Universidad Nacional Autónoma de México, Mexico City, Mexico.
This article explores the relationship between zoonotic outbreaks and the interconnected nature of globalization through the lens of the One Health framework. It argues that global ecological changes driven by climate changes, deforestation, intensified agriculture, wildlife trade, and urban expansion have significantly elevated the risk of zoonotic disease transmission. It emphasizes how globalization has intensified some of the factors that contribute to the emergence of zoonotic outbreaks, and has also facilitated the spread of infectious diseases.
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