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A Palearctic view of a bat fungal disease
F Whiting-Fawcett1,2, A S Blomberg2, T Troitsky2
1Department of Evolution, Ecology and Behaviour, University of Liverpool, Liverpool, UK.
Abstract:
The fungal infection causing white-nose disease in hibernating bats in North America has resulted in dramatic population declines of affected species, since the introduction of the causative agent Pseudogymnoascus destructans. The fungus is native to the Palearctic, where it also infects several bat species, yet rarely causes severe pathology or the death of the host. Pseudogymnoascus destructans infects bats during hibernation by invading and digesting the skin tissue, resulting in the disruption of torpor patterns and consequent emaciation. Relations among pathogen, host, and environment are complex, and individuals, populations, and species respond to the fungal pathogen in different ways. For example, the Nearctic Myotis lucifugus responds to infection by mounting a robust immune response, leading to immunopathology often contributing to mortality. In contrast, the Palearctic M. myotis shows no significant immunological response to infection. This lack of a strong response, resulting from the long coevolution between the hosts and the pathogen in the pathogen's native range, likely contributes to survival in tolerant species. After more than 15 years since the initial introduction of the fungus to North America, some of the affected populations are showing signs of recovery, suggesting that the fungus, hosts, or both are undergoing processes that may eventually lead to coexistence. The suggested or implemented management methods of the disease in North America have encompassed, for example, the use of probiotics and fungicides, vaccinations, and modifying the environmental conditions of the hibernation sites to limit the growth of the pathogen, intensity of infection, or the hosts' responses to it. Based on current knowledge from Eurasia, policy makers and conservation managers should refrain from disrupting the ongoing evolutionary processes and adopt a holistic approach to managing the epizootic.
Insights
White-nose disease, caused by the fungus Pseudogymnoascus destructans, has devastated North American bat populations. Some populations show recovery signs, suggesting adaptation and potential coexistence with the pathogen.
Area of Science:
- Fungal Pathogenesis
- Wildlife Disease Ecology
- Bat Conservation
Background:
- White-nose syndrome (WNS) is a devastating fungal epizootic caused by Pseudogymnoascus destructans, a pathogen native to Eurasia.
- Introduction to North America has led to severe population declines in hibernating bats, impacting multiple species.
- The fungus invades hibernating bats' skin, disrupting torpor and causing emaciation, with varying host responses.
Purpose of the Study:
- To analyze the complex interactions between Pseudogymnoascus destructans, North American bat hosts, and environmental factors.
- To understand differential host responses to WNS, comparing Nearctic and Palearctic species.
- To evaluate the potential for adaptation and coexistence following WNS introduction.
Main Methods:
- Comparative analysis of bat immune responses to Pseudogymnoascus destructans infection.
- Ecological and evolutionary assessment of host-pathogen dynamics.
- Review of current and proposed management strategies for WNS.
Main Results:
- North American bats (e.g., Myotis lucifugus) exhibit strong immune responses leading to immunopathology and mortality.
- Palearctic bats (e.g., M. myotis) show limited immune response due to long-term coevolution with the pathogen.
- Some North American bat populations are demonstrating recovery, indicating potential adaptation processes.
Conclusions:
- Long-term coevolution in Eurasia has resulted in host tolerance to Pseudogymnoascus destructans.
- Disrupting ongoing evolutionary adaptation in North America may hinder recovery.
- A holistic management approach, respecting natural evolutionary processes, is recommended for WNS epizootics.
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