Epidermal ‘alarm substance’ cells of fishes maintained by non-alarm functions: possible defence against pathogens, parasites and UVB radiation
- 7 August 2007
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 274 (1625) , 2611-2619
- https://doi.org/10.1098/rspb.2007.0709
Abstract
Many fishes possess specialized epidermal cells that are ruptured by the teeth of predators, thus reliably indicating the presence of an actively foraging predator. Understanding the evolution of these cells has intrigued evolutionary ecologists because the release of these alarm chemicals is not voluntary. Here, we show that predation pressure does not influence alarm cell production in fishes. Alarm cell production is stimulated by exposure to skin-penetrating pathogens (water moulds: Saprolegnia ferax and Saprolegnia parasitica), skin-penetrating parasites (larval trematodes: Teleorchis sp. and Uvulifer sp.) and correlated with exposure to UV radiation. Suppression of the immune system with environmentally relevant levels of Cd inhibits alarm cell production of fishes challenged with Saprolegnia. These data are the first evidence that alarm substance cells have an immune function against ubiquitous environmental challenges to epidermal integrity. Our results indicate that these specialized cells arose and are maintained by natural selection owing to selfish benefits unrelated to predator-prey interactions. Cell contents released when these cells are damaged in predator attacks have secondarily acquired an ecological role as alarm cues because selection favours receivers to detect and respond adaptively to public information about predation.Keywords
This publication has 37 references indexed in Scilit:
- Generalization of learned predator recognition: an experimental test and framework for future studiesProceedings Of The Royal Society B-Biological Sciences, 2007
- INFECTIVITY OF ORNITHODIPLOSTOMUM PTYCHOCHEILUS AND POSTHODIPLOSTOMUM MINIMUM (TREMATODA: DIPLOSTOMIDAE) CERCARIAE FOLLOWING EXPOSURE TO CADMIUMJournal of Parasitology, 2005
- Fish semiochemicals and the evolution of communication networksPublished by Cambridge University Press (CUP) ,2005
- Amphibian Decline and Emerging DiseaseAmerican Scientist, 2004
- Development and Intensity Dependence of Ornithodiplostomum ptychocheilus Metacercariae in Fathead Minnows (Pimephales promelas)Journal of Parasitology, 2000
- IMMUNOMODULATION BY HEAVY METALS TESTED INDIVIDUALLY OR IN MIXTURES IN RAINBOW TROUT (ONCORHYNCHUS MYKISS) EXPOSED IN VIVOEnvironmental Toxicology and Chemistry, 1999
- Effects of Ultraviolet-B Radiation on Fish: Histologic Comparison of a UVB-Sensitive and a UVB-Tolerant SpeciesJournal of Aquatic Animal Health, 1997
- Chemical labeling of northern pike (Esox lucius) by the alarm pheromone of fathead minnows (Pimephales promelas)Journal of Chemical Ecology, 1993
- Chondroitin and keratan sulphate in the epidermal club cells of teleostsJournal of Fish Biology, 1992
- Effect of hypoxanthine-3(N)-oxide and hypoxanthine-1(N)-oxide on central nervous excitation of the black tetraGymnocorymbus ternetzi (Characidae, Ostariophysi, Pisces) indicated by dorsal light responseJournal of Chemical Ecology, 1985