Understanding bacterial host adaptation to combat infectious disease
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AI plain-English summaryStaphylococcus aureus bacteria are jumping from animals to humans and back again, picking up new genetic tricks that make them harder to treat. This project tracks exactly how the microbe adapts to different host species—rabbits, cows, people—by reconstructing its evolutionary path mutation by mutation. The problem is urgent. Antimicrobial resistance is rising, and new pandemic strains of *S. aureus* have emerged through these host jumps. Current treatments often fail because they target features the bacteria change as they switch hosts. The researchers have already identified the specific mutations that let *S. aureus* infect rabbits. Now they will combine phylogenetic analysis, molecular microbiology, and chemical biophysics to map the full set of bacterial and host factors that enable adaptation. If successful, this work could reveal new drug targets or vaccine candidates that work across multiple host species, protecting both human health and livestock. The approach is designed to be transferable to other major pathogens that also jump between hosts. This is fundamental science with a clear practical endpoint: understanding the molecular mechanics of host adaptation so we can block it before the next pandemic strain emerges.
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