Disease-induced stabilization of predator-prey oscillations

Autor(en): Hilker, Frank M.
Schmitz, Kirsten
Stichwörter: Basic reproduction number; Biological control; Biology; Consumer-resource cycle; Eco-epidemiological model; ENRICHMENT; EXPLOITATION ECOSYSTEMS; INFECTIOUS-DISEASES; Life Sciences & Biomedicine - Other Topics; Mathematical & Computational Biology; MODEL; PARADOX; Paradox of enrichment; PARASITE ESTABLISHMENT; PATHOGEN; POPULATION-DYNAMICS; STABILITY; TRANSMISSION
Erscheinungsdatum: 2008
Herausgeber: ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
Journal: JOURNAL OF THEORETICAL BIOLOGY
Volumen: 255
Ausgabe: 3
Startseite: 299
Seitenende: 306
Zusammenfassung: 
Parasites are an integral part of virtually all food webs and species Communities. Here we consider the invasion of a resident predator-prey system by an infectious disease with frequency-dependent transmission spreading within the predator population. We derive biologically plausible and insightful quantities (demographic and epizootiological reproduction numbers) that allow us to completely determine community composition. Successful disease invasion can have two contrary effects in driving its host population to extinction or in stabilizing predator-prey cycles. Our findings contradict predictions from previous models Suggesting a destabilizing effect of parasites. We show that predator infection counteracts the paradox of enrichment. In turn, parasite removal from food webs can have catastrophic effects. We discuss the implications for biological control and resource management on more than one trophic level. (C) 2008 Elsevier Ltd. All rights reserved.
ISSN: 00225193
DOI: 10.1016/j.jtbi.2008.08.018

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