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Pathogen dynamics during invasion and establishment of white-nose syndrome explain mechanisms of host persistence
Winifred F Frick1,2, Tina L Cheng1, Kate E Langwig1,3
1Department of Ecology and Evolutionary Biology, University of California, 1156 High St, Santa Cruz, California, 95064, USA.
Abstract:
Disease dynamics during pathogen invasion and establishment determine the impacts of disease on host populations and determine the mechanisms of host persistence. Temporal progression of prevalence and infection intensity illustrate whether tolerance, resistance, reduced transmission, or demographic compensation allow initially declining populations to persist. We measured infection dynamics of the fungal pathogen Pseudogymnoascus destructans that causes white-nose syndrome in bats by estimating pathogen prevalence and load in seven bat species at 167 hibernacula over a decade as the pathogen invaded, became established, and some host populations stabilized. Fungal loads increased rapidly and prevalence rose to nearly 100% at most sites within 2 yr of invasion in six of seven species. Prevalence and loads did not decline over time despite huge reductions in colony sizes, likely due to an extensive environmental reservoir. However, there was substantial variation in fungal load among sites with persisting colonies, suggesting that both tolerance and resistance developed at different sites in the same species. In contrast, one species disappeared from hibernacula within 3 yr of pathogen invasion. Variable host responses to pathogen invasion require different management strategies to prevent disease-induced extinction and to facilitate evolution of tolerance or resistance in persisting populations.
Insights
White-nose syndrome pathogen Pseudogymnoascus destructans rapidly infected most bat species. Host populations showed varied responses, with some persisting through tolerance or resistance, while one species faced extinction.
Area of Science:
- Ecology
- Pathology
- Conservation Biology
Background:
- Disease dynamics are critical for understanding host population impacts and persistence mechanisms.
- Pathogen invasion and establishment influence disease severity and host survival strategies.
Purpose of the Study:
- To investigate the infection dynamics of Pseudogymnoascus destructans (causing white-nose syndrome) in bats.
- To assess host population responses to pathogen invasion over a decade.
Main Methods:
- Estimated pathogen prevalence and fungal load in seven bat species across 167 hibernacula.
- Monitored disease progression during invasion, establishment, and population stabilization phases.
Main Results:
- Pseudogymnoascus destructans rapidly achieved high prevalence in six of seven species within two years.
- Fungal loads remained high despite significant colony size reductions, indicating an environmental reservoir.
- Variable host responses observed, including development of tolerance/resistance in persisting populations and extinction in one species.
Conclusions:
- Bat populations exhibit diverse responses to white-nose syndrome, influencing persistence and extinction risk.
- Management strategies must be tailored to specific host-pathogen dynamics to prevent extinction and promote adaptation.
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