WHY SHORT-TERM EXPERIMENTS MAY NOT ALLOW LONG-TERM PREDICTIONS ABOUT INTRAGUILD PREDATION
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The interaction of cannibalism and omnivory: consequences for community dynamics.Pathogen-induced reversal of native dominance in a grassland community.Intraguild Predation Dynamics in a Lake Ecosystem Based on a Coupled Hydrodynamic-Ecological Model: The Example of Lake Kinneret (Israel).Predators, parasitoids, and pathogens: a cross-cutting examination of intraguild predation theory.Alternative prey and the dynamics of intraguild predation: theoretical perspectives.Evaluating the effects of trophic complexity on a keystone predator by disassembling a partial intraguild predation food web.The ubiquity of intraguild predation among predatory arthropodsPredator diversity, intraguild predation, and indirect effects drive parasite transmission.Antagonistic interactions between an invasive alien and a native coccinellid species may promote coexistence.Role of supplemental foods and habitat structural complexity in persistence and coexistence of generalist predatory mitesShort- and long-term effects of habitat fragmentation differ but are predicted by response to the matrix.Habitat structure affects intraguild predation.How to evaluate the potential occurrence of intraguild predation.Prey DNA detection success following digestion by intraguild predators: influence of prey and predator species.Ant exclusion in citrus over an 8-year period reveals a pervasive yet changing effect of ants on a Mediterranean spider assemblage.The Quality of Nonprey Food Affects Cannibalism, Intraguild Predation, and Hyperpredation in Two Species of Phytoseiid Mites.Predation on heterospecific larvae by adult females of Kampimodromus aberrans, Amblyseius andersoni, Typhlodromus pyri and Phytoseius finitimus (Acari: Phytoseiidae).Intraguild predation in a structured habitat: distinguishing multiple-predator effects from competitor effects.Impact of cannibalism on predator-prey dynamics: size-structured interactions and apparent mutualism.Habitat complexity does not promote coexistence in a size-structured intraguild predation system.Trophic omnivory across a productivity gradient: intraguild predation theory and the structure and strength of species interactions.Density-dependent intraguild predation of an aphid parasitoid.Biological Invasion and Coexistence in Intraguild PredationInteractive prey and predator diversity effects drive consumption ratesPatterns of exclusion in an intraguild predator–prey system depend on initial conditions
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P2860
WHY SHORT-TERM EXPERIMENTS MAY NOT ALLOW LONG-TERM PREDICTIONS ABOUT INTRAGUILD PREDATION
description
im August 2005 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в серпні 2005
@uk
name
WHY SHORT-TERM EXPERIMENTS MAY NOT ALLOW LONG-TERM PREDICTIONS ABOUT INTRAGUILD PREDATION
@en
WHY SHORT-TERM EXPERIMENTS MAY NOT ALLOW LONG-TERM PREDICTIONS ABOUT INTRAGUILD PREDATION
@nl
type
label
WHY SHORT-TERM EXPERIMENTS MAY NOT ALLOW LONG-TERM PREDICTIONS ABOUT INTRAGUILD PREDATION
@en
WHY SHORT-TERM EXPERIMENTS MAY NOT ALLOW LONG-TERM PREDICTIONS ABOUT INTRAGUILD PREDATION
@nl
prefLabel
WHY SHORT-TERM EXPERIMENTS MAY NOT ALLOW LONG-TERM PREDICTIONS ABOUT INTRAGUILD PREDATION
@en
WHY SHORT-TERM EXPERIMENTS MAY NOT ALLOW LONG-TERM PREDICTIONS ABOUT INTRAGUILD PREDATION
@nl
P2860
P356
P1476
WHY SHORT-TERM EXPERIMENTS MAY NOT ALLOW LONG-TERM PREDICTIONS ABOUT INTRAGUILD PREDATION
@en
P2093
Cheryl J. Briggs
Elizabeth T. Borer
P2860
P304
P356
10.1890/04-1776
P577
2005-08-01T00:00:00Z