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Warming magnifies predation and reduces prey coexistence in a model litter arthropod system
by
Thakur, Madhav P.
, Eisenhauer, Nico
, Griffin, John N.
, Künne, Tom
in
Animals
/ Aquatic insects
/ Arthropoda
/ Arthropods
/ Body length
/ Body Size
/ Body temperature
/ Climate Change
/ Coexistence
/ Collembola
/ Competition
/ Competitive advantage
/ Ecology
/ Folsomia candida
/ Food Chain
/ Global warming
/ Interspecific Competition
/ Litter
/ Mites
/ Models, Biological
/ Plastic debris
/ Predation
/ Predators
/ Predatory Behavior
/ Prey
/ Proisotoma minuta
/ Species
/ Species Coexistence
/ Temperature gradients
/ Thermal environments
/ Top-Down Control
/ Trait Plasticity
/ Trophic Interactions
2017
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Warming magnifies predation and reduces prey coexistence in a model litter arthropod system
by
Thakur, Madhav P.
, Eisenhauer, Nico
, Griffin, John N.
, Künne, Tom
in
Animals
/ Aquatic insects
/ Arthropoda
/ Arthropods
/ Body length
/ Body Size
/ Body temperature
/ Climate Change
/ Coexistence
/ Collembola
/ Competition
/ Competitive advantage
/ Ecology
/ Folsomia candida
/ Food Chain
/ Global warming
/ Interspecific Competition
/ Litter
/ Mites
/ Models, Biological
/ Plastic debris
/ Predation
/ Predators
/ Predatory Behavior
/ Prey
/ Proisotoma minuta
/ Species
/ Species Coexistence
/ Temperature gradients
/ Thermal environments
/ Top-Down Control
/ Trait Plasticity
/ Trophic Interactions
2017
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Warming magnifies predation and reduces prey coexistence in a model litter arthropod system
by
Thakur, Madhav P.
, Eisenhauer, Nico
, Griffin, John N.
, Künne, Tom
in
Animals
/ Aquatic insects
/ Arthropoda
/ Arthropods
/ Body length
/ Body Size
/ Body temperature
/ Climate Change
/ Coexistence
/ Collembola
/ Competition
/ Competitive advantage
/ Ecology
/ Folsomia candida
/ Food Chain
/ Global warming
/ Interspecific Competition
/ Litter
/ Mites
/ Models, Biological
/ Plastic debris
/ Predation
/ Predators
/ Predatory Behavior
/ Prey
/ Proisotoma minuta
/ Species
/ Species Coexistence
/ Temperature gradients
/ Thermal environments
/ Top-Down Control
/ Trait Plasticity
/ Trophic Interactions
2017
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Warming magnifies predation and reduces prey coexistence in a model litter arthropod system
Journal Article
Warming magnifies predation and reduces prey coexistence in a model litter arthropod system
2017
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Overview
Climate warming can destabilize interactions between competitors as smaller organisms gain advantages in warmer environments. Whether and how warming-induced effects on competitive interactions are modified by predation remains unknown. We hypothesized that predation will offset the competitive advantage of smaller prey species in warmer environments because of their greater vulnerability to predation. To test this, we assembled a litter arthropod community with two Collembola species (Folsomia candida and Proisotoma minuta) of different body sizes across a temperature gradient (three thermal environments) and in the presence and absence of predatory mites. Predatory mites reduced Collembola coexistence with increasing temperatures. Contradicting our hypothesis, the larger prey species always outperformed the smaller prey species in warmer environments with predators. Larger prey probably benefited as they expressed a greater trait (body length) plasticity to warming. Warming can thus magnify predation effects and reduce the probability of prey coexistence.
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