Predator–prey body size, interaction strength and the stability of a real food web
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Open Access
- 16 April 2004
- journal article
- Published by Wiley in Journal of Animal Ecology
- Vol. 73 (3) , 399-409
- https://doi.org/10.1111/j.0021-8790.2004.00818.x
Abstract
Summary: We examined the empirical relationship between predator–prey body size ratio and interaction strength in the Ythan Estuary food web. We have refined a previously published version of the food web and explored how size‐based predatory effects might affect food web dynamics. To do so, we used four predatory speciesCrangon crangon(Linnaeus),Carcinus maenas(Linnaeus),Pomatoschistus microps(Krøyer) andPlatichthys flesus(Linnaeus) and one common prey speciesCorophium volutator(Pallas) from the food web. All predators and prey were sorted into small, medium and large size classes and placed into mesocosms in all possible pairwise combinations of size and species identity to determine per capita effects of predators on prey (aij). Using Lotka–Volterra dynamics the empirical body size relationships obtained from these experiments and other relationships already available for the Ythan Estuary, we parameterized a food web model for this system. The local stability properties of the resulting food web models were then determined. We found that by choosing interaction strengths using an empirically defined scaling law, the resulting food web models are always dynamically stable, despite the residual uncertainties in the modelling approach. This contrasts with the statistical expectation that random webs with random parameters have a vanishingly improbable chance of stability. The patterning of predator and prey body sizes in real ecosystems affects the arrangement of interaction strengths, which in turn determines food web stability.Keywords
This publication has 49 references indexed in Scilit:
- Growing large in a low grade environment: size dependent foraging gain and niche shifts to cannibalism in Arctic charOikos, 2006
- Interaction strengths in food webs: issues and opportunitiesJournal of Animal Ecology, 2004
- Complexity and stability revisitedEcology Letters, 2003
- Defining the abundance body‐size constraint space: data from a real food webEcology Letters, 1999
- Effects of Predator–prey Body Size Ratios on the Stability of Food ChainsJournal of Theoretical Biology, 1998
- Re–evaluating the omnivory–stability relationship in food websProceedings Of The Royal Society B-Biological Sciences, 1997
- Body Size and Consumer-Resource DynamicsThe American Naturalist, 1992
- Energy flow in the Ythan estuary, Aberdeenshire, ScotlandEstuarine, Coastal and Shelf Science, 1981
- A Comment on Randomly Constructed Model EcosystemsThe American Naturalist, 1978
- A Consideration of the Trophic Dynamics of a Late Cretaceous Large‐Dinosaur Community (Oldman Formation)Ecology, 1976