Abstract
Host defense and pathogen virulence interact and mutually shape each other’s evolution. Host–pathogen co-evolutionary outcomes have potentially significant impacts on population dynamics and vice versa. To investigate host–pathogen interactions and explore the impact of micro-level co-evolutionary outcomes on macro-level epidemics, we develop a co-evolutionary model with a combined host-defense strategy. Our results illustrate that host–pathogen co-evolution may induce infection cycling and lead to the vanishing of the disease-induced hydra effect, whereas pathogen mono-evolution strengthens the hydra effect in both range and magnitude. As the recovery rate increases, we find a counter-intuitive effect of increased disease prevalence due to host–pathogen co-evolution: the disease is first highly infectious and lethal, then highly infectious but with low lethality. Such diverse outcomes suggest that this combined co-evolutionary and epidemiological framework holds great promise for a better understanding of infection.
| Original language | English |
|---|---|
| Article number | 148 |
| Journal | Bulletin of Mathematical Biology |
| Volume | 87 |
| Issue number | 10 |
| DOIs | |
| State | Published - Oct 2025 |
Keywords
- Host–pathogen co-evolution
- Hydra effect
- Infection cycling
- Transmission patterns
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