First Detection of Bat White-Nose Syndrome in Western North America
Jeffrey M Lorch1, Jonathan M Palmer2, Daniel L Lindner2
1U.S. Geological Survey, National Wildlife Health Center, Madison, Wisconsin, USA.
Abstract:
White-nose syndrome (WNS) is an emerging fungal disease of bats caused by Pseudogymnoascus destructans. Since it was first detected near Albany, NY, in 2006, the fungus has spread across eastern North America, killing unprecedented numbers of hibernating bats. The devastating impacts of WNS on Nearctic bat species are attributed to the likely introduction of P. destructans from Eurasia to naive host populations in eastern North America. Since 2006, the disease has spread in a gradual wavelike pattern consistent with introduction of the pathogen at a single location. Here, we describe the first detection of P. destructans in western North America in a little brown bat (Myotis lucifugus) from near Seattle, WA, far from the previously recognized geographic distribution of the fungus. Whole-genome sequencing and phylogenetic analyses indicated that the isolate of P. destructans from Washington grouped with other isolates of a presumed clonal lineage from the eastern United States. Thus, the occurrence of P. destructans in Washington does not likely represent a novel introduction of the fungus from Eurasia, and the lack of intensive surveillance in the western United States makes it difficult to interpret whether the occurrence of P. destructans in the Pacific Northwest is disjunct from that in eastern North America. Although there is uncertainty surrounding the impacts of WNS in the Pacific Northwest, the presence of the pathogen in western North America could have major consequences for bat conservation. IMPORTANCE White-nose syndrome (WNS) represents one of the most consequential wildlife diseases of modern times. Since it was first documented in New York in 2006, the disease has killed millions of bats and threatens several formerly abundant species with extirpation or extinction. The spread of WNS in eastern North America has been relatively gradual, inducing optimism that disease mitigation strategies could be established in time to conserve bats susceptible to WNS in western North America. The recent detection of the fungus that causes WNS in the Pacific Northwest, far from its previous known distribution, increases the urgency for understanding the long-term impacts of this disease and for developing strategies to conserve imperiled bat species.
Insights
The fungus Pseudogymnoascus destructans, causing white-nose syndrome in bats, has been detected in western North America. Genetic analysis suggests it is not a new Eurasian introduction, raising concerns for bat conservation efforts.
Area of Science:
- Wildlife pathology
- Fungal disease ecology
- Bat conservation biology
Background:
- White-nose syndrome (WNS), caused by the fungus Pseudogymnoascus destructans, has devastated Nearctic bat populations since 2006.
- The disease's spread across eastern North America suggests a single introduction event from Eurasia to naive bat populations.
Purpose of the Study:
- To report the first detection of Pseudogymnoascus destructans in western North America.
- To genetically characterize the WNS fungus isolate from Washington and infer its origin.
- To assess the implications of this westward expansion for bat conservation.
Main Methods:
- Detection of Pseudogymnoascus destructans in a little brown bat (Myotis lucifugus) near Seattle, Washington.
- Whole-genome sequencing of the P. destructans isolate.
- Phylogenetic analysis to compare the Washington isolate with known P. destructans lineages.
Main Results:
- The P. destructans isolate from Washington was genetically similar to a clonal lineage found in eastern North America.
- The finding does not appear to represent a novel introduction from Eurasia.
- The geographic relationship of this western detection to eastern populations remains unclear due to limited surveillance.
Conclusions:
- The presence of P. destructans in western North America necessitates a reevaluation of WNS spread dynamics.
- Urgent development of conservation strategies is required to protect western bat populations from WNS impacts.
- Understanding the long-term consequences of WNS in the Pacific Northwest is critical for bat survival.


