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Chemosensory Orientation of the Rock Crab Cancer irroratus

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Abstract

The importance of chemical cues in the foraging behavior of the rock crab, Cancer irroratus, was investigated. Crabs were presented with mussel prey located upstream, downstream, or cross-stream. Trials were conducted under both light and dark conditions. With the prey upstream, the crabs exhibited the shortest search time and 100% searching success. There was a significant difference between flow direction treatments, but there were no significant differences between light and dark treatments. When presented with mussel extract and a seawater control, crabs approached the source of the current. Analysis of search patterns revealed differences in search time, path length and straightness, and total number of turns. Chemoreception was the predominant mode of prey detection and was used in guiding crabs to their prey. Large variabilities in the search path and search path parameters were exhibited, and there was no fixed search pattern for orientation toward food while foraging. It is suggested that rock crabs employed both chemotaxis and rheotaxis for locating odor sources.

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REFERENCES

  • Aluja, M., Prokopy, R. J., Elkinton, J. S., and Laurence, F. 1989. Novel approach for tracking and quantifying the movement patterns of insects in three dimensions under seminatural conditions. Environ. Entomol. 18(1):1-7.

    Google Scholar 

  • Atema, J. 1996. Eddy chemotaxis and odor landscapes: Exploration of nature with animal sensors. Biol. Bull. 191:129-138.

    Google Scholar 

  • Bell, W. J. 1991. Searching Behaviour: The Behavioural Ecology of Finding Resources. Chapman and Hall, New York.

    Google Scholar 

  • Bell, W. J., and CardÉ, R. T., 1984. Chemo-orientation in walking insects, pp. 93-111, in W. J. Bell and R. T. Cardé. Chemical Ecology of Insects. Sinauer Associates, Sunderland, Massachusetts.

    Google Scholar 

  • Bond, A. B. 1980. Optimal foraging in a uniform habitat: The search mechanism of the green lacewing. Anim. Behav. 28:10-19.

    Google Scholar 

  • Derby, C. D., and Atema, J. 1982. The function of chemo-and mechanoreceptors in lobster (Homarus americanus) feeding behavior. J. Exp. Biol. 98:317-327.

    Google Scholar 

  • Devine, D. V., and Atema, J. 1982. Function of chemoreceptor organs in spatial orientation of the lobster, Homarus americanus: Differences and overlap. Biol. Bull. 163:144-153.

    Google Scholar 

  • Dusenbery, D. B. 1989. Ranging strategies. J. Theor. Biol. 136:309-316.

    Google Scholar 

  • Dusenbery, D. B. 1990. Upwind searching for an odor plume is sometimes optimal. J. Chem. Ecol. 16:1971-1976.

    Google Scholar 

  • Haefner, P. A., Jr. 1976. Distribution, reproduction and moulting of the rock crab, Cancer irroratus Say, 1917, in the mid-Atlantic Bight. J. Nat. Hist. 10:377-397.

    Google Scholar 

  • Jander, R. 1975. Ecological aspects of spatial orientation. Ann. Rev. Syst. Ecol. 6:171-188.

    Google Scholar 

  • Jones, R. E. 1976. Search behaviour: A study of three caterpillar species. Behaviour 60:237-259.

    Google Scholar 

  • McLaughlin, P. A. 1982. Comparative morphology of crustacean appendages, pp. 197-256, in L. G. Abele. Embryology, Morphology and Genetics. The Biology of Crustacea, Vol 2. Academic Press, New York.

    Google Scholar 

  • Mellgren, R. L., and Roper, T. J. 1986. Spatial learning and discrimination of food patches in the European badger (Meles meles 1.). Anim Behav. 34:1129-1134.

    Google Scholar 

  • Moore, P. A., Scholz, N., and Atema, J. 1991. Chemical orientation of lobsters, Homarus americanus, in turbulent odor plumes. J. Chem. Ecol. 17:1293-1307.

    Google Scholar 

  • Rebach, S. 1996. the role of odor in prey recognition by rock crabs, Cancer irroatus Say. J. Chem. Ecol. 22(12):2197-2207.

    Google Scholar 

  • Rebach, S., French, D. P., Staden, F. C. V., Wilber, M. B., and Byrd, V. E. 1990. Antennular sensitivity of the rock crab Cancer irroratus to food substances. J. Crust. Biol. 10:213-217.

    Google Scholar 

  • Reeder, P. B., and Ache, B. W. 1980. Chemotaxis in the Florida spring lobster, Panulirus argus. Anim. Behav. 28:831-839.

    Google Scholar 

  • Ristvey, A. 1993. The effect of experience on the responses of rock crabs, Cancer irroratus to prey odor. MS thesis. University of Maryland Eastern Shore, Princess Anne, Maryland, 72 pp.

    Google Scholar 

  • Rittschof, D. 1992. Chemosensation in the daily life of crabs. Am. Zool. 32:363-369.

    Google Scholar 

  • Rittschof, D., and Sutherland, J. P. 1986. Field studies on chemically mediated behavior in land hermit crabs: Volatile and nonvolatile odors. J. Chem. Ecol. 12:1273-1284.

    Google Scholar 

  • Shotton, L. R. 1973. Biology of the rock crab, Cancer irroratus Say, in the coastal waters of Virginia. MA thesis. University of Virginia, Charlottesville, Virginia, 72 pp.

    Google Scholar 

  • Smith, J. N. M. 1974a. The food searching behaviour of two European thrushes: I. Description and analysis of search paths. Behaviour 48:276-302.

    Google Scholar 

  • Smith, J. N. M. 1974b. The food searching behaviour of two European thrushes: II. The adaptiveness of the search patterns. Behaviour. 49:1-61.

    Google Scholar 

  • Thomas, G. 1974. The influences encountering a food object on subsequent searching behaviour in Gasterosteus aculeatus 1. Anim. Behav. 22:941-952.

    Google Scholar 

  • Tourtellot, M. K., Collins, R. D., and Bell, W. J. 1991. The problem of movelength and turn definition in analysis of orientation data. J. Theor. Biol. 150:287-297.

    Google Scholar 

  • Tye, A. 1989. A model of search behaviour for the Northern Wheater Oenanthe (Aves, Turdidae) and other pause-travel predators. Ethology 83:1-18.

    Google Scholar 

  • Veena, T., and Ganeshaiah, K. N. 1991. Non-random search pattern of ants foraging on honeydew of aphids on cashew inflorescences. Anim. Behav. 41:7-15.

    Google Scholar 

  • Zar, J. H. 1984. Biostatistical Analysis, 2nd ed. Prentice-Hall, Englewood Cliffs, New Jersey.

    Google Scholar 

  • Zimmer-Faust, R. K. 1993 ATP: A potent prey attractant evoking carnivory. Limnol. Oceanogr. 38:1271-1275.

    Google Scholar 

  • Zimmer-Faust, R. K., and Case, J. F. 1992. Odors influencing foraging behavior of the California spiny lobster, Panulirus interruptus, and other decapod Crustacea. Mar. Behav. Physiol. 9:35-58.

    Google Scholar 

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Zhou, T., Rebach, S. Chemosensory Orientation of the Rock Crab Cancer irroratus . J Chem Ecol 25, 315–329 (1999). https://doi.org/10.1023/A:1020898830096

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