Responses of larval dragonflies to conspecific and heterospecific predator cues |
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Authors: | GAVIN FERRIS VOLKER H. W. RUDOLF |
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Affiliation: | Mountain Lake Biological Station, Pembroke, VA, U.S.A.;, Clarion University of Pennsylvania, Biology Department, Clarion, PA, U.S.A.;, and Department of Biology, University of Virginia, Charlottesville, VA, U.S.A. |
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Abstract: | Abstract. 1. In cannibalistic populations, smaller individuals are subject to predation by larger conspecifics, and small individuals commonly alter their behaviour in response to cannibals. Little is known, however, about the underlying cues that trigger such responses and how the behavioural responses to conspecific cannibals differ from heterospecific predators. 2. This study tests which cues are used for the detection of conspecific predators in the larva of the dragonfly Plathemis lydia and how the behavioural response to cannibals differed from the response to heterospecific predators. 3. Individuals were exposed to chemical cues, visual cues, and a combination of both cues from conspecifics as well as no predator and heterospecific predator controls during which their activity and feeding rates were observed. 4. Individuals increased their activity, spatial movement and feeding behaviour in response to either visual or chemical cues from conspecific predators, which was opposite to responses displayed with cues from heterospecific predators. Interestingly, the responses to visual and chemical cues from conspecifics combined were weaker than to either cue in isolation and similar to the no cue control. 5. The results clearly indicate that individuals are able to use chemical and visual cues to detect even very subtle differences in phenotype of conspecific predators. 6. The opposite response in behaviour when exposed to conspecific cannibals vs. heterospecific predators suggests that the presence of cannibals will increase the mortality risk of small individuals due to heterospecific predation. This risk-enhancement is likely to have important consequences for the dynamics of predator–prey interactions. |
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Keywords: | Anti-predator behaviour cannibalism community ecology competition dragonfly larvae intra-specific predation predator detection stage interaction |
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