Researchers at McMaster University discovered thousands of bacteria and fungi on the wings of bats in Lillooet, British Columbia, which may help combat white-nose syndrome. The findings suggest that a probiotic cocktail could be effective against the disease, with promising results from previous tests.
Eastern red bats, now the most commonly detected bat in Midwestern forests, have a significant impact on tree regeneration due to their appetite for insect-damaging bugs. Forest managers can benefit from considering these bats' landscape preferences, particularly ponds and smaller forest openings.
Researchers at the University of Illinois developed a new bat box design that provides more thermally appropriate roosting spaces for bats. The 'rocket box' style, with modifications to length and insulation, helps reduce the risk of overheating and provides space for bats to move and avoid extreme temperatures.
Research reveals environmental reservoir dynamics play a crucial role in white nose syndrome's impact on bat populations. High levels of fungal pathogens in the environment lead to earlier, more severe infections and increased mortality in North America, whereas low levels result in delayed, less severe infections across Eurasia.
Researchers identified non-disease causing fungal relatives of WNS-causing fungus, which live in bat hibernation sites and on bats. This discovery may aid in understanding the molecular toolbox used by the deadly fungus to kill bats.