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Erschienen in: Population Ecology 1/2016

05.10.2015 | Original article

Density-dependent dispersal complicates spatial synchrony in tri-trophic food chains

verfasst von: Zhiguang Liu, Fengpan Zhang, Cang Hui

Erschienen in: Population Ecology | Ausgabe 1/2016

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Abstract

Spatial synchrony can increase extinction risk and undermines metapopulation persistence. Both dispersal and biotic interactions can strongly affect spatial synchrony. Here, we explore the spatial synchrony of a tri-trophic food chain in two patches connected by density-dependent dispersal, namely the strategies of prey evasion (PE) and predator pursuit (PP). The dynamics of the food chain are depicted by both the Hastings–Powell model and the chemostat model, with synchrony measured by the Pearson correlation coefficient. We use the density-independent dispersal in the system as a baseline for comparison. Results show that the density-independent dispersal of a species in the system can promote its dynamic synchrony. Dispersal of intermediate species in the tri-trophic food chain is the strongest synchronizer. In contrast, the density-dependent PP and PE of intermediate species can desynchronize the system. Highly synchronized dynamics emerged when the basal species has a strong PE strategy or when the top species has a moderate PP strategy. Our results reveal the complex relationship between density-dependent dispersal and spatial synchrony in tri-trophic systems.

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Metadaten
Titel
Density-dependent dispersal complicates spatial synchrony in tri-trophic food chains
verfasst von
Zhiguang Liu
Fengpan Zhang
Cang Hui
Publikationsdatum
05.10.2015
Verlag
Springer Japan
Erschienen in
Population Ecology / Ausgabe 1/2016
Print ISSN: 1438-3896
Elektronische ISSN: 1438-390X
DOI
https://doi.org/10.1007/s10144-015-0515-0

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