Amphibian species traits, evolutionary history and environment predict Batrachochytrium dendrobatidis infection
Dan A Greenberg1,2, Wendy J Palen2, Arne Ø Mooers1
1Department of Biological Sciences and Crawford Laboratory of Evolutionary Studies Simon Fraser University Burnaby BC Canada.
Abstract:
The fungal pathogen Batrachochytrium dendrobatidis (B. dendrobatidis) has emerged as a major agent of amphibian extinction, requiring conservation intervention for many susceptible species. Identifying susceptible species is challenging, but many aspects of species biology are predicted to influence the evolution of host resistance, tolerance, or avoidance strategies towards disease. In turn, we may expect species exhibiting these distinct strategies to differ in their ability to survive epizootic disease outbreaks. Here, we test for phylogenetic and trait-based patterns of B. dendrobatidis infection risk and infection intensity among 302 amphibian species by compiling a global data set of B. dendrobatidis infection surveys across 95 sites. We then use best-fit models that associate traits, taxonomy and environment with B. dendrobatidis infection risk and intensity to predict host disease mitigation strategies (tolerance, resistance, avoidance) for 122 Neotropical amphibian species that experienced epizootic B. dendrobatidis outbreaks, and noted species persistence or extinction from these events. Aspects of amphibian species life history, habitat use and climatic niche were consistently linked to variation in B. dendrobatidis infection patterns across sites around the world. However, predicted B. dendrobatidis infection risk and intensity based on site environment and species traits did not reveal a consistent pattern between the predicted host disease mitigation strategy and extinction outcome. This suggests that either tolerant or resistant species may have no advantage in ameliorating disease during epizootic events, or that other factors drive the persistence of amphibian populations during chytridiomycosis outbreaks. These results suggest that using a trait-based approach may allow us to identify species with resistance or tolerance to endemic B. dendrobatidis infections, but that this approach may be insufficient to ultimately identify species at risk of extinction from epizootics.
Insights
Batrachochytrium dendrobatidis (B. dendrobatidis) causes amphibian extinctions. While species traits predict infection risk, they don't consistently predict survival during outbreaks, suggesting other factors are crucial for amphibian conservation.
Area of Science:
- Ecology
- Evolutionary Biology
- Conservation Biology
Background:
- The fungal pathogen Batrachochytrium dendrobatidis (B. dendrobatidis) is a significant driver of amphibian declines globally.
- Understanding factors influencing host susceptibility and disease outcomes is critical for amphibian conservation efforts.
Purpose of the Study:
- To investigate phylogenetic and trait-based patterns of B. dendrobatidis infection risk and intensity across amphibian species.
- To predict host disease mitigation strategies and their relationship with species persistence or extinction during B. dendrobatidis epizootics.
Main Methods:
- Compiled a global dataset of B. dendrobatidis infection surveys from 302 amphibian species across 95 sites.
- Utilized best-fit models to associate species traits, taxonomy, and environmental factors with infection risk and intensity.
- Predicted disease mitigation strategies for 122 Neotropical species experiencing B. dendrobatidis outbreaks.
Main Results:
- Amphibian life history, habitat use, and climatic niche were consistently linked to B. dendrobatidis infection patterns worldwide.
- Predicted infection risk and intensity did not show a consistent link between disease mitigation strategy (resistance, tolerance, avoidance) and extinction outcome.
- Species traits could identify resistance/tolerance to endemic B. dendrobatidis but were insufficient for predicting extinction risk during epizootics.
Conclusions:
- Amphibian species traits influence B. dendrobatidis infection dynamics but do not reliably predict survival during widespread disease outbreaks.
- Factors beyond resistance, tolerance, or avoidance likely determine amphibian population persistence during chytridiomycosis epizootics.
- Trait-based approaches may help identify species resilient to endemic B. dendrobatidis, but are insufficient for predicting extinction risk in epidemic scenarios.
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