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Journal Article

Citation

England SJ, Robert D. Proc. Natl. Acad. Sci. U. S. A. 2024; 121(23): e2322674121.

Copyright

(Copyright © 2024, National Academy of Sciences)

DOI

10.1073/pnas.2322674121

PMID

38768327

Abstract

Predators and prey benefit from detecting sensory cues of each other's presence. As they move through their environment, terrestrial animals accumulate electrostatic charge. Because electric charges exert forces at a distance, a prey animal could conceivably sense electrical forces to detect an approaching predator. Here, we report such a case of a terrestrial animal detecting its predators by electroreception. We show that predatory wasps are charged, thus emit electric fields, and that caterpillars respond to such fields with defensive behaviors. Furthermore, the mechanosensory setae of caterpillars are deflected by these electrostatic forces and are tuned to the wingbeat frequency of their insect predators. This ability unveils a dimension of the sensory interactions between prey and predators and is likely widespread among terrestrial animals.


Language: en

Keywords

*Predatory Behavior/physiology; *Wasps/physiology; Air; Animals; caterpillars; electrostatics; predator–prey interactions; sensory ecology; Static Electricity; wasps

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