COULD WHITE-NOSE SYNDROME MANIFEST DIFFERENTLY IN MYOTIS LUCIFUGUS IN WESTERN VERSUS EASTERN REGIONS OF NORTH
Karen Blejwas1,2, Laura Beard3, Joseph Buchanan4
1Alaska Department of Fish and Game, PO Box 110024, Juneau, Alaska 99811, USA.
Abstract:
White-nose syndrome (WNS) has notably affected the abundance of Myotis lucifugus (little brown myotis) in North America. Thus far, substantial mortality has been restricted to the eastern part of the continent where the cause of WNS, the invasive fungus Pseudogymnoascus destructans, has infected bats since 2006. To date, the state of Washington is the only area in the Western US or Canada (the Rocky Mountains and further west in North America) with confirmed cases of WNS in bats, and there the disease has spread more slowly than it did in Eastern North America. Here, we review differences between M. lucifugus in western and eastern parts of the continent that may affect transmission, spread, and severity of WNS in the West and highlight important gaps in knowledge. We explore the hypothesis that western M. lucifugus may respond differently to WNS on the basis of different hibernation strategies, habitat use, and greater genetic structure. To document the effect of WNS on M. lucifugus in the West most effectively, we recommend focusing on maternity roosts for strategic disease surveillance and monitoring abundance. We further recommend continuing the challenging work of identifying hibernation and swarming sites to better understand the microclimates, microbial communities, and role in disease transmission of these sites, as well as the ecology and hibernation physiology of bats in noncavernous hibernacula.
Insights
White-nose syndrome (WNS) is impacting little brown myotis populations in North America. Western bats may respond differently to WNS due to distinct ecological factors, warranting focused monitoring strategies.
Area of Science:
- Ecology
- Wildlife Disease
- Mycology
Background:
- White-nose syndrome (WNS), caused by the fungus Pseudogymnoascus destructans, has led to significant declines in Myotis lucifugus (little brown myotis) populations across eastern North America since 2006.
- Confirmed WNS cases in bats are currently limited to Washington in western North America, with slower disease spread observed compared to the East.
Approach:
- This review examines potential differences in western Myotis lucifugus populations, including hibernation strategies, habitat use, and genetic structure, that could influence WNS transmission, spread, and severity.
- The study highlights critical knowledge gaps concerning WNS impacts in western bat populations.
Key Points:
- Western Myotis lucifugus may exhibit differential responses to WNS due to variations in ecological factors.
- Maternity roosts are recommended as strategic locations for WNS surveillance and abundance monitoring in the West.
- Identifying hibernation and swarming sites is crucial for understanding microclimates, microbial communities, and disease transmission dynamics.
Conclusions:
- Further research into the ecology and physiology of western bats, particularly in non-cavernous hibernacula, is essential for effective WNS management.
- Understanding regional differences in bat ecology is key to predicting and mitigating WNS impacts in western North America.
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