Related Experiment Video
Updated: May 15, 2026

Application of I TASSER, trRosetta, UCSF Chimera, HADDOCK server, and HEX loria for De Novo and In Silico Design of Proteins
Published on: July 8, 2025
Spread of white-nose syndrome on a network regulated by geography and climate
Sean P Maher1, Andrew M Kramer, J Tomlin Pulliam
1Odum School of Ecology, University of Georgia, 140 E. Green Street, Athens, Georgia 30602-2202, USA. smaher02@gmail.com
Abstract:
Wildlife and plant diseases can reduce biodiversity, disrupt ecosystem services and threaten human health. Emerging pathogens have displayed a variety of spatial spread patterns due to differences in host ecology, including diffusive spread from an epicentre (West Nile virus), jump dispersal on a network (foot-and-mouth disease), or a combination of these (Sudden oak death). White-nose syndrome is a highly pathogenic infectious disease of bats currently spreading across North America. Understanding how bat ecology influences this spread is crucial to management of infected and vulnerable populations. Here we show that white-nose syndrome spread is not diffusive but rather mediated by patchily distributed habitat and large-scale gradients in winter climate. Simulations predict rapid expansion and infection of most counties with caves in the contiguous United States by winter 2105-2106. Our findings show the unique pattern of white-nose syndrome spread corresponds to ecological traits of the host and suggest hypotheses for transmission mechanisms acting at the local scale.
Related Concept Videos
Infectious Diseases and Their Occurrence
Migration
Microbes and Climate Change
What is Natural Selection?
Threats to Biodiversity
Global Climate Change
