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Reproductive biology of Orchestia gammarellus (Crustacea: Amphipoda) living in a sewage treatment works

Published online by Cambridge University Press:  11 May 2009

M. B. Jones
Affiliation:
Department of Biological Sciences, University of Plymouth, Plymouth, PL4 8AA
G. D. Wigham
Affiliation:
Department of Biological Sciences, University of Plymouth, Plymouth, PL4 8AA

Extract

A population of the supralittoral Orchestia gammarellus (Pallas) (Amphipoda: Talitridae), living in a percolating filter of a sewage treatment works has been studied over 12 months. The population showed a seasonal pattern of occurrence, few animals being collected during the winter. The sex ratio was biased significantly to females except during the breeding season when it did not deviate significantly from 1:1. Ovigerous females, never collected in high numbers (1–14 per month), were found from April to August, with peak occurrence in May/June. Juveniles were present throughout the year, but peak recruitment occurred in summer, following the period of reproduction by females. The smallest ovigerous female had a body length of 12.6 mm and the largest measured 20.0 mm. Egg numbers (5–31 per brood) increased with increasing female size and egg volume more than doubled during embryonic development. These findings are discussed in relation to the possible methods of colonization of this unique habitat and the influence of sewage on crustacean life-history traits.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 1993

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References

Agnew, D. J. & Jones, M. B., 1986. Metabolic adaptations of Gammarus duebeni Liljeborg (Crustacea, Amphipoda) to hypoxia in a sewage treatment plant. Comparative Biochemistry and Physiology, 84A, 475478.CrossRefGoogle Scholar
Bruce, A. M. & Hawkes, H. A., 1983. Biological filters. In Ecological aspects of used-water treatment, vol. 3 (ed. Curds, C. R. and Hawkes, H. A.), pp. 1111. London: Academic Press.Google Scholar
Codling, I. D., 1984. An investigation into the effects of a marine infiltration on the associated fauna of Looe sewage treatment works. BSc (Hons) project, Department of Biological Sciences, Plymouth Polytechnic.Google Scholar
Curds, C. R. & Hawkes, H. A., ed., 1975. Ecological aspects of used-water treatment. Vol. 1. The organisms and their ecology. London: Academic Press.Google Scholar
Dahl, E., 1946. The Amphipoda of the Sound, Part 1. Terrestrial Amphipoda. Undersökningar över Öresund, 29, 152. [Lunds Universitets Årsskrift, N.F. Avd. 2, Bd 42, Nr 6.]Google Scholar
Johnson, I. & Jones, M. B., 1989. Effects of zinc/salinity combinations on zinc regulation in Gammarus duebeni from the estuary and the sewage treatment works at Looe, Cornwall. Journal of the Marine Biological Association of the United Kingdom, 69, 249260.CrossRefGoogle Scholar
Johnson, I. T. & Jones, M. B., 1990. Effect of zinc on osmoregulation of Gammarus duebeni (Crustacea: Amphipoda) from the estuary and the sewage treatment works at Looe, Cornwall. Ophelia, 31, 187196.CrossRefGoogle Scholar
Jones, M. B., 1980. Reproductive ecology of the estuarine burrowing mud crab Helice crassa (Grapsidae). Estuarine and Coastal Marine Science, 11, 433443.CrossRefGoogle Scholar
Jones, M. B. & Johnson, I., 1991. Effects of saline sewage on the biological community of a percolating filter. In Protozoa and their role in marine processes (ed. Reid, P. C. et al.), pp. 131141. Berlin: Springer-Verlag.CrossRefGoogle Scholar
Jones, M. B. & Johnson, I., 1992. Responses of the brackish-water amphipod Gammarus duebeni (Crustacea) to saline sewage. Netherlands Journal of Sea Research, in press.CrossRefGoogle Scholar
Jones, M. B. & Wigham, G. D., 1988. Colonization by estuarine amphipods of a sewage treatment works. Bulletin of the Estuarine and Brackish-water Sciences Association, 50, 2933.Google Scholar
Learner, M. A., 1975. Crustacea and Mollusca. In Ecological aspects of used-water treatment, vol. 1 (ed. Curds, C. R. and Hawkes, H. A.), pp. 393398. London: Academic Press.Google Scholar
Lincoln, R. J., 1979. British marine Amphipoda: Gammaridea. London: British Museum (Natural History).Google Scholar
Moore, P. G. & Francis, C. H., 1985a. On the water relations and osmoregulation of the beach-hopper Orchestia gammarellus (Pallas) (Crustacea: Amphipoda). Journal of Experimental Marine Biology and Ecology, 94, 131150.CrossRefGoogle Scholar
Moore, P. G. & Francis, C. H., 1985b. Some observations on food and feeding of the supralittoral beach-hopper Orchestia gammarellus (Pallas) (Crustacea: Amphipoda). Ophelia, 24, 183197.CrossRefGoogle Scholar
Moore, P. G. & Francis, C. H., 1986. Notes on breeding periodicity and sex ratio of Orchestia gammarellus (Pallas) (Crustacea: Amphipoda) at Millport, Scotland. Journal of Experimental Marine Biology and Ecology, 95, 203209.CrossRefGoogle Scholar
Moore, P. G. & Taylor, A. C., 1984. Gill area relationships in an ecological series of gammaridean amphipods (Crustacea). Journal of Experimental Marine Biology and Ecology, 74, 179186.CrossRefGoogle Scholar
Morritt, D., 1989. Ionic regulation in littoral and terrestrial amphipods (Crustacea: Amphipoda: Talitridae). Journal of Experimental Marine Biology and Ecology, 132, 5367.CrossRefGoogle Scholar
Reid, D. M., 1947. Talitridae (Crustacea, Amphipoda). Synopses of the British Fauna, Linnean Society. London, 7, 125.Google Scholar
Spicer, J. I., 1986. Physiological ecology of selected talitrid amphipods. PhD thesis, University of Glasgow.Google Scholar
Spicer, J. I., Moore, P. G. & Taylor, A. C., 1987. The physiological ecology of land invasion by the Talitridae (Crustacea: Amphipoda). Proceedings of the Royal Society (B), 232, 95124.Google Scholar
Spicer, J. I. & Taylor, A. C., 1986. A comparative study of the gill area relationships in some talitrid amphipods. Journal of Natural History, 20, 935947.CrossRefGoogle Scholar
Spicer, J. I. & Taylor, A. C., 1987. Respiration in air and water of some semi- and fully terrestrial talitrids (Crustacea: Amphipoda: Talitridae). Journal of Experimental Marine Biology and Ecology, 106, 265277.CrossRefGoogle Scholar
Taylor, A. C. & Spicer, J. I., 1986. Oxygen-transporting properties of the blood of two semi-terrestrial amphipods, Orchestia gammarellus (Pallas) and O. mediterranea (Costa). Journal of Experimental Marine Biology and Ecology, 97, 135150.CrossRefGoogle Scholar
Wildish, D. J., 1970a. Some factors affecting the distribution of Orchestia Leach in estuaries. Journal of Experimental Marine Biology and Ecology, 5, 276284.CrossRefGoogle Scholar
Wildish, D. J., 1970b. Locomotory activity rhythms in some littoral Orchestia (Crustacea: Amphipoda). Journal of the Marine Biological Association of the United Kingdom, 50, 241252.CrossRefGoogle Scholar
Wildish, D. J., 1971. Adaptive significance of a biased sex ratio in Orchestia. Nature, London, 233, 5455.CrossRefGoogle ScholarPubMed
Wildish, D. J., 1977. Biased sex ratios in invertebrates. In Advances in invertebrate reproduction, vol. 1 (ed. Adiyodi, K. G. and Adiyodi, R. G.), pp. 823. Karivellur, India: Peralam-Kenoth.Google Scholar
Wildish, D. J., 1979. Reproductive consequences of the terrestrial habit in Orchestia (Crustacea: Amphipoda). International Journal of Invertebrate Reproduction, 1, 920.CrossRefGoogle Scholar
Wildish, D. J., 1987. Estuarine species of Orchestia (Crustacea: Amphipoda: Talitroidea) from Britain. Journal of the Marine Biological Association of the United Kingdom, 67, 571583.CrossRefGoogle Scholar
Wildish, D. J., 1988. Ecology and natural history of aquatic Talitroidea. Canadian Journal of Zoology, 66, 23402359.CrossRefGoogle Scholar
Wildish, D. J. & Frost, B., 1991. Volumetric growth in gammaridean Amphipoda. Hydrobiologia, 223, 171176.CrossRefGoogle Scholar
Williamson, D. I., 1951. On the mating and breeding of semi-terrestrial amphipods. Report of the Dove Marine Laboratory, Cullercoats, Northumberland (series 3), 12, 4961.Google Scholar