Predators reduce extinction risk in noisy metapopulations.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 20657767.
- Also identified by DOI 10.1371/journal.pone.0011635 and PMC identifier PMC1690746.
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Abstract
BACKGROUND: Spatial structure across fragmented landscapes can enhance regional population persistence by promoting local "rescue effects." In small, vulnerable populations, where chance or random events between individuals may have disproportionately large effects on species interactions, such local processes are particularly important. However, existing theory often only describes the dynamics of metapopulations at regional scales, neglecting the role of multispecies population dynamics within habitat patches. FINDINGS: By coupling analysis across spatial scales we quantified the interaction between local scale population regulation, regional dispersal and noise processes in the dynamics of experimental host-parasitoid metapopulations. We find that increasing community complexity increases negative correlation between local population dynamics. A potential mechanism underpinning this finding was explored using a simple population dynamic model. CONCLUSIONS: Our results suggest a paradox: parasitism, whilst clearly damaging to hosts at the individual level, reduces extinction risk at the population level.