Flipping the switch on fungal pH adaptation
In plain English
AI plain-English summaryFungi that cause human disease must survive salty, alkaline conditions inside the body, and this project will investigate whether exposure to similar conditions in the environment—driven by climate change and human activity—is making them more dangerous. The problem is that scientists do not understand how environmental pressures like soil salinity and pH shifts prime fungi for infectious growth. All major human fungal pathogens rely on a specific signalling pathway, PacC/Rim, to regulate both salt tolerance and the production of virulence factors such as toxins and iron-scavenging molecules. This project will use evolutionary, molecular, chemical, and structural biology to test whether environmental pH and salinity exposures directly select for heightened infectivity in rapidly evolving *Aspergillus* species. This is primarily fundamental science. If it succeeds, it will reveal the causal link between ecological exposure and fungal disease—a gap that currently limits our ability to predict or prevent emerging fungal threats. A deeper understanding of how environmental change primes fungi for infection could eventually inform surveillance strategies or identify new targets for antifungal drugs, but the immediate value lies in clarifying a basic biological mechanism that underpins a growing global health problem.
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