Dispersal stabilizes coupled ecological and evolutionary dynamics in a host-parasitoid system.
basic_science · Level V
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- Record sourced from PubMed, PMID 38484053.
- Also identified by DOI 10.1126/science.adg4602.
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Abstract
When ecological and evolutionary dynamics occur on comparable timescales, persistence of the ensuing eco-evolutionary dynamics requires both ecological and evolutionary stability. This unites key questions in ecology and evolution: How do species coexist, and what maintains genetic variation in a population? In this work, we investigated a host-parasitoid system in which pea aphid hosts rapidly evolve resistance to <i>Aphidius ervi</i> parasitoids. Field data and mathematical simulations showed that heterogeneity in parasitoid dispersal can generate variation in parasitism-mediated selection on hosts through time and space. Experiments showed how evolutionary trade-offs plus moderate host dispersal across this selection mosaic cause host-parasitoid coexistence and maintenance of genetic variation in host resistance. Our results show how dispersal can stabilize both the ecological and evolutionary components of eco-evolutionary dynamics.
Medical subject headings
- Aphids
- Host-Parasite Interactions
- Wasps
- Animal Distribution