In benthic habitats, predators can generally not be detected visually, so olfaction may be particularly important for inducing anti-predation behaviors in prey organisms. Manipulative parasites infecting benthic hosts could suppress these responses so as to increase the probability of predation and thus trophic transmission. We studied how infection with the acanthocephalan Echinorhynchus borealis affects the response of the benthic amphipod Pallasea quadrispinosa to water conditioned by burbot (Lota lota), the parasite's definitive host. In normal lake water, refuge use by infected and uninfected amphipods was similar, but when exposed to burbot-conditioned water, uninfected amphipods spent much more time hiding than infected amphipods. Thus, rather than affecting ambient hiding behavior, E. borealis infection seems to alter host response to a predator. A group of amphipods sampled from a postglacial spring that is devoid of fish predators exhibited only a weak response to burbot-conditioned water, perhaps suggesting these anti-predator behaviors are costly to maintain. The hiding behavior of spring and infected amphipods was very similar. If the reduced refuge use by the spring amphipods reflects adaptation to a predator-free environment, this indicates that E. borealis severely weakens its host's anti-predator behavior. Presumably this increases the likelihood of parasite transmission.
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April 2008
RESEARCH NOTES|
April 01 2008
The Effect of Echinorhynchus borealis (Acanthocephala) Infection on the Anti-Predator Behavior of a Benthic Amphipod
D. P. Benesh;
D. P. Benesh
aDepartment of Biological and Environmental Science, POB 35, FI-40014 University of Jyväskylä, Finland
cPresent address: Max Planck Institute for Evolutionary Biology, Department of Evolutionary Ecology, August-Thienemann-Strass 2, Germany 24306. [email protected]
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J. Kitchen;
J. Kitchen
aDepartment of Biological and Environmental Science, POB 35, FI-40014 University of Jyväskylä, Finland
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K. Pulkkinen;
K. Pulkkinen
aDepartment of Biological and Environmental Science, POB 35, FI-40014 University of Jyväskylä, Finland
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I. Hakala;
I. Hakala
aDepartment of Biological and Environmental Science, POB 35, FI-40014 University of Jyväskylä, Finland
bLammi Biological Station, University of Helsinki, Pääjärventie 320, 16900 Lammi, Finland
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E. T. Valtonen
E. T. Valtonen
aDepartment of Biological and Environmental Science, POB 35, FI-40014 University of Jyväskylä, Finland
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J Parasitol (2008) 94 (2): 542–545.
Citation
D. P. Benesh, J. Kitchen, K. Pulkkinen, I. Hakala, E. T. Valtonen; The Effect of Echinorhynchus borealis (Acanthocephala) Infection on the Anti-Predator Behavior of a Benthic Amphipod. J Parasitol 1 April 2008; 94 (2): 542–545. doi: https://doi.org/10.1645/GE-1380.1
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