Journal article
Familiarity among kin has minor effects beyond grouping for escape response in a shoaling fish
Journal of fish biology, Vol.First Online, pp.1-10
27/02/2026
PMID: 41757429
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Abstract
Prey have evolved cost-effective antipredator manoeuvres to evade predators, and living in a group is a common strategy employed to improve survival. Associating with familiar conspecifics, particularly kin, may further enhance these strategies by improving the flow of reliable information concerning the type and magnitude of nearby threats. This study investigated the influence of familiarity among shoalmates on the activity and escape responses of a shoaling damselfish. We examined the routine swimming and fast-start response of juvenile spiny Chromis (Acanthochromispolyacanthus, Bleeker 1855) when tested alone, with familiar kin, or with unfamiliar conspecifics. Solitary fish were less active, moved more slowly than fish in groupsand were more likely to exhibit a substantially delayed (>0.05 s) fast-start responseto a startle stimulus. Fish with familiar kin exhibited the highest escape speeds andtravelled the greatest distances during the initial response, and there was a trend for familiar fish to perform better than non-familiar fish. Interestingly, the time taken to initiate a response (response latency: ~0.01 s) for those undertaking a non-delayed fast start was unaffected by treatment. Shoaling with familiar kin enhanced some key aspects of the fast-start escape response, which may contribute to predator confu-sion effects and increase the likelihood of survival for individuals within familiar groups.
Details
- Title
- Familiarity among kin has minor effects beyond grouping for escape response in a shoaling fish
- Creators
- Mark I. McCormick - Southern Cross UniversityHaruka Okamura - James Cook UniversityEric P. Fakan - ARC Centre of Excellence for Coral Reef StudiesRohan M. Brooker - Australian Institute of Marine ScienceLaura Velasquez Jimenez - James Cook University
- Publication Details
- Journal of fish biology, Vol.First Online, pp.1-10
- Publisher
- Wiley
- Grant note
- This work was supported through the ARC Centre of Excellence forCoral Reef Studies research grant (EI140100117).
- Identifiers
- 991013372622102368
- Copyright
- © 2026 Fisheries Society of the British Isles.
- Academic Unit
- Faculty of Science and Engineering
- Language
- English
- Resource Type
- Journal article