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Standard Operating Procedure for Lyssavirus Surveillance of the Bat Population in Taiwan
Published on: August 27, 2019
Identifying Suspect Bat Reservoirs of Emerging Infections
Daniel Crowley1, Daniel Becker2, Alex Washburne1
1Department of Microbiology and Immunology, Montana State University, Bozeman, MT 59717, USA.
Abstract:
Bats host a number of pathogens that cause severe disease and onward transmission in humans and domestic animals. Some of these pathogens, including henipaviruses and filoviruses, are considered a concern for future pandemics. There has been substantial effort to identify these viruses in bats. However, the reservoir hosts for Ebola virus are still unknown and henipaviruses are largely uncharacterized across their distribution. Identifying reservoir species is critical in understanding the viral ecology within these hosts and the conditions that lead to spillover. We collated surveillance data to identify taxonomic patterns in prevalence and seroprevalence and to assess sampling efforts across species. We systematically collected data on filovirus and henipavirus detections and used a machine-learning algorithm, phylofactorization, in order to search the bat phylogeny for cladistic patterns in filovirus and henipavirus infection, accounting for sampling efforts. Across sampled bat species, evidence for filovirus infection was widely dispersed across the sampled phylogeny. We found major gaps in filovirus sampling in bats, especially in Western Hemisphere species. Evidence for henipavirus infection was clustered within the Pteropodidae; however, no other clades have been as intensely sampled. The major predictor of filovirus and henipavirus exposure or infection was sampling effort. Based on these results, we recommend expanding surveillance for these pathogens across the bat phylogenetic tree.
Insights
Bats carry viruses like henipaviruses and filoviruses that can spread to humans. Current surveillance has gaps, particularly for filoviruses in the Western Hemisphere, necessitating broader bat pathogen detection efforts.
Area of Science:
- Virology
- Ecology
- Epidemiology
Background:
- Bats are reservoirs for numerous pathogens, including henipaviruses and filoviruses, which pose risks for human and animal health and potential pandemics.
- Identifying specific bat reservoir species is crucial for understanding viral ecology and preventing spillover events.
Purpose of the Study:
- To analyze existing surveillance data for filovirus and henipavirus detections in bats.
- To identify taxonomic patterns in pathogen prevalence and seroprevalence.
- To assess sampling efforts across bat species and phylogenetic clades.
Main Methods:
- Systematic collation of surveillance data on filovirus and henipavirus detections in bats.
- Application of a machine-learning algorithm (phylofactorization) to analyze bat phylogeny.
- Accounting for sampling effort in the analysis of infection patterns.
Main Results:
- Filovirus infections were detected across various bat species, but sampling gaps were identified, especially in the Western Hemisphere.
- Henipavirus infections were primarily clustered within the Pteropodidae family.
- Sampling effort was the most significant predictor of observed filovirus and henipavirus exposure or infection.
Conclusions:
- Current surveillance for bat-borne henipaviruses and filoviruses has significant gaps.
- Expanded and phylogenetically informed surveillance is recommended to better understand and mitigate risks associated with these viral pathogens in bats.

