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Coral reef fish assemblages: intra- and interspecific competition for shelter sites

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Observations were made on intra- and interspecific aggressive interactions among the fishes living in the rubble/sand coral reef habitat in St. Croix, U. S. Virgin Islands. Four species (beaugregory — Stegastes leucostictus; ocean surgeonfish — Acanthurus bahianus; doctor fish — A. chirurgus; common squirrelfish — Holocentrus rufus) which sheltered in holes on the reef all actively defended one to several shelter sites at dusk. Short-term shelter side fidelity was observed in three of these four species. Agonistic interactions over both food and shelter occurred during the daytime but much less frequently than agonistic interactions over shelter at dusk. Dominance in intraspecific aggression was determined almost completely by the relative sizes of the individuals involved, with the larger individuals dominating in 95–98% of all encounters. A similar, but less strong, relationship between size and dominance existed for interactions between closely related species. For aggressive encounters between unrelated species, however, both relative sizes and species identity determined the outcome. Species, both diurnal and nocturnal, which strongly defend several shelter sites may have a strong and disproportionate impact on the sheltering behavior of other fishes. Intraspecific and interspecific defense of shelter sites may determine the patterns of mortality that result from predation, thereby influencing population abundances and assemblage composition.

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References cited

  • Brothers, E.B. & W.N. McFarland. 1981. Correlations between otolith microstructure, growth, and life history transitions in newly recruited French grunts [Haemulon flavolineatum (Desmarest), Haemulidae]. Rapp. P.-v. Reun. Cons. int. Explor. Mer. 178: 369–374.

    Google Scholar 

  • Collette, B.B. & F.H. Talbot. 1972. Activity patterns of coral reef fishes with emphasis on nocturnal-diurnal changeover. Los Angeles County Museum of Natural History Science Bull. 14: 98–124.

    Google Scholar 

  • Ebersole, J.P. 1977. The adaptive significance of interspecific territoriality in the reef fish Eupomacentrus leucostictus. Ecology 58: 914–920.

    Google Scholar 

  • Emery, A.R. 1973. Comparative ecology and functional osteology of fourteen species of damselfishes (Pisces: Pomacentridae) at Alligator Reef, Florida Keys. Bull. Mar. Sci. 23: 649–770.

    Google Scholar 

  • Emson, R.H. & R.J. Faller-Fritsch. 1976. An experimental investigation into the effect of crevice availability on abundance and size-structure in a population of Littorina rudis (Maton): Gastropoda: Prosobranchia. J. Exp. Mar. Biol. Ecol. 23: 285–297.

    Google Scholar 

  • Gladfelter, W.B. 1979. Twilight migrations and foraging activities of the copper sweeper, Pempheris schomburgki (Teleostei, Pempheridae). Mar. Biol. 5: 503–506.

    Google Scholar 

  • Hobson, E.S. 1965. Diurnal-nocturnal activity of some inshore fishes in the Gulf of California. Copeia 1965: 291–302.

  • Hobson, E.S. 1968. Predatory behavior of some shore fishes in the Gulf of California. U. S. Fish Wildlife Ser., Res. Rep. 73. 92 pp.

    Google Scholar 

  • Hobson, E.S. 1972. Activity of Hawaiian reef fishes during the evening and morning transitions between daylight and darkness. U. S. Fish Bull. 70: 715–740.

    Google Scholar 

  • Jackson, J.B.C. 1979. Overgrowth competition between encrusting cheilostome ectoprocts in a Jamaican cryptic reef environment. J. Animal Ecol. 48: 805–823.

    Google Scholar 

  • McFarland, W.N. 1979. Observations on recruitment in haemulid fishes. Proceedings of the Gulf & Caribbean Fisheries Institute 32: 132–138.

    Google Scholar 

  • McFarland, W.N. & Z.M. Hillis. 1982. Observations on agonistic behavior between members of juvenile French and white grunts — family Haemulidae. Bull. Mar. Sci. 32: 255–268.

    Google Scholar 

  • McFarland, W.N., J.C. Ogden & J.N. Lythgoe. 1979. The influence of light on the twilight migrations of grunts. Env. Biol. Fish. 4: 9–22.

    Google Scholar 

  • Molles, M.C. 1978. Fish species diversity on model and natural reef patches: experimental insular biogeography. Ecol. Monog. 48: 289–305.

    Google Scholar 

  • Munz, F.W. & W.N. McFarland. 1973. The significance of spectral position in the rhodopsins of tropical marine fishes. Vision Res. 13: 1829–1874.

    Google Scholar 

  • Myrberg, A.A. & R.E. Thresher. 1974. Interspecific aggression and its relevance to the concept of territoriality in reef fishes. Amer. Zool. 14: 81–96.

    Google Scholar 

  • Nelson, B.V. & R.R. Vance. 1979. Diel foraging patterns of the sea urchin Centrostephanus coronatus as a predator avoidance strategy. Mar. Biol. 51: 251–258.

    Google Scholar 

  • Ogden, J.C. & P.R. Ehrlich. 1977. The behavior of heterotypic resting schools of juvenile grunts (Pomadasyidae). Mar. Biol. 42: 273–280.

    Google Scholar 

  • Randall, J.E. 1963. An analysis of the fish populations of artificial and natural reefs in the Virgin Islands. Carib. J. Science 3: 31–47.

    Google Scholar 

  • Reinboth, R. 1973. Dualistic reproductive behavior in the protogynous wrasse Thalassoma bifasciatum and some observations on its day — night changeover. Helgoländer wiss. Meer. 24: 174–191.

    Google Scholar 

  • Robertson, D.R. & J.M. Sheldon. 1979. Competition and the availability of sleeping sites for a diurnally active Caribbean reef fish. J. Exp. Mar. Biol. Ecol. 40: 285–298.

    Google Scholar 

  • Shulman, M.J. 1984. Resource limitation and recruitment patterns in a coral reef fish assemblage. J. Exp. Mar. Biol. Ecol. 74: 85–109.

    Google Scholar 

  • Shulman, M.J. 1985. Recruitment of coral reef fish: effects of the spatial distribution of predators and shelter. Ecology (in print).

  • Shulman, M.J., J.C. Ogden, J.P. Ebersole, W.N. McFarland, S.L. Miller & N.G. Wolf. 1983. Priority effects in the recruitment of juvenile coral reef fishes. Ecology 64: 1508–1513.

    Google Scholar 

  • Smith, C.L. 1978. Coral reef fish communities: a compromise view. Env. Biol. Fish. 3: 109–128.

    Google Scholar 

  • Starck, W.A. II & W.P. Davis. 1966. Night habits of fishes of Alligator Reef, Florida. Ichthyologica 38: 313–356.

    Google Scholar 

  • Stewart, M.M. & F.H. Pough. 1983. Population density of tropical forest frogs: relation to retreat sites. Science 221: 570–572.

    Google Scholar 

  • Stimpson, J. 1981. The effect of reduced predator density on a community of reef fish. Western Society of Naturalists Meeting, Santa Barbara, (Abstracts).

  • Talbot, F.H., B.C. Russell & G. Anderson. 1978. Coral reef fish communities: unstable, high-diversity systems? Ecol. Monog. 48: 425–440.

    Google Scholar 

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Shulman, M.J. Coral reef fish assemblages: intra- and interspecific competition for shelter sites. Environ Biol Fish 13, 81–92 (1985). https://doi.org/10.1007/BF00002576

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