PREY ADAPTATION AS A CAUSE OF PREDATOR‐PREY CYCLES
- 1 December 1997
- Vol. 51 (6) , 1742-1750
- https://doi.org/10.1111/j.1558-5646.1997.tb05098.x
Abstract
We analyze simple models of predator-prey systems in which there is adaptive change in a trait of the prey that determines the rate at which it is captured by searching predators. Two models of adaptive change are explored: (1) change within a single reproducing prey population that has genetic variation for vulnerability to capture by the predator; and (2) direct competition between two independently reproducing prey populations that differ in their vulnerability. When an individual predator's consumption increases at a decreasing rate with prey availability, prey adaptation via either of these mechanisms may produce sustained cycles in both species' population densities and in the prey's mean trait value. Sufficiently rapid adaptive change (e.g., behavioral adaptation or evolution of traits with a large additive genetic variance), or sufficiently low predator birth and death rates will produce sustained cycles or chaos, even when the predator-prey dynamics with fixed prey capture rates would have been stable. Adaptive dynamics can also stabilize a system that would exhibit limit cycles if traits were fixed at their equilibrium values. When evolution fails to stabilize inherently unstable population interactions, selection decreases the prey's escape ability, which further destabilizes population dynamics. When the predator has a linear functional response, evolution of prey vulnerability always promotes stability. The relevance of these results to observed predator-prey cycles is discussed.Keywords
Funding Information
- National Science Foundation (DEB 9419716)
This publication has 33 references indexed in Scilit:
- Does risk of predation influence population dynamics? Evidence from cyclic decline of snowshoe haresWildlife Research, 1995
- Plant‐Herbivore Interactions and Theory of Coevolution1Plant Species Biology, 1994
- The responses of unstable food chains to enrichmentEvolutionary Ecology, 1994
- Evolutionarily unstable fitness maxima and stable fitness minima of continuous traitsEvolutionary Ecology, 1993
- Metaphysiological and evolutionary dynamics of populations exploiting constant and interactive resources:R?K selection revisitedEvolutionary Ecology, 1993
- Can the Solar Cycle and Climate Synchronize the Snowshoe Hare Cycle in Canada? Evidence from Tree Rings and Ice CoresThe American Naturalist, 1993
- Body Size and Consumer-Resource DynamicsThe American Naturalist, 1992
- On Conditions for Evolutionary Stability for a Continuously Varying CharacterThe American Naturalist, 1991
- Red Queens and ESS: the coevolution of evolutionary ratesEvolutionary Ecology, 1987
- Evolutionary and continuous stabilityJournal of Theoretical Biology, 1983