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Effects of feeding live or frozen prey on growth, survival and the life cycle of the cuttlefish, Sepia officinalis (Linnaeus, 1758)

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Abstract

The effects of feeding live or frozen grass shrimp (Palaemonetes varians) to the cuttlefish, Sepia officinalis, were determined in two experiments. During Experiment I, two populations of 30 cuttlefish (aged 90 days old) were fed either live or frozen grass shrimp. Cuttlefish fed live shrimp grew larger, matured earlier, had a shorter life cycle (255 days) than the ones fed frozen shrimp (282 days), and had lower mortality. Females from the group fed frozen shrimp matured a month later but were significantly larger, 130.9 ± 38.5 g, compared to 74.2 ± 16.0 g, laid larger eggs, 0.47 ± 0.11 g, compared to 0.28 ± 0.10 g, and had higher individual fecundity (411 eggs female−1, compared to 150 eggs female−1). Newly born hatchlings from both groups had similar weights. During Experiment II, six replicates of 15 cuttlefish (50 days old) were used, three for each of the two diets tested. The exact same amount of live or frozen shrimp was provided to both populations twice a day. No differences in growth and feeding rates or food conversions were found at the end of the experiment. During the first week, cuttlefish fed frozen shrimp grew larger, and had higher conversion rates, compared to the ones fed live shrimp. Mortality was higher for the group fed live shrimp (36.6%) in Experiment II, mainly occurring during the last week. Mortality for cuttlefish fed frozen shrimp in Experiment II was 2.2%. Results obtained here indicate that freezing the grass shrimp only had a negative effect on the survival of S. officinalis in Experiment I.

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References

  • Boletzky S. 1974. Elevage de Céphalopodes en aquarium. Vie Milieu 24: 309–340.

    Google Scholar 

  • Boletzky S. 1979. Growth and life-span of Sepia officinalis under artificial conditions. Rapport Communitaire Internationel Mer Méditeranee 25/26 (10): 10.

    Google Scholar 

  • Boletzky S. 1983. Sepia officinalis. In: Boyle P.R. (ed) Cephalopod Life Cycles. Vol. I. Academic Press, London, pp. 31–52.

    Google Scholar 

  • Bouchaud O. 1991. Energy consumption of the cuttlefish Sepia officinalis L. (Mollusca: Cephalopoda) during embryonic development, preliminary results. Bull. Mar. Sci. 49(1–2): 333–340.

    Google Scholar 

  • Bouchaud O. and Daguzan J. 1989. Etude de dévelopement de l'oeuf de Sepia officinalis L. (Céphalopode, Sepioidea) en conditions expérimentales. Haliotis 19: 189–200.

    Google Scholar 

  • Bouchaud O. and Daguzan J. 1990. Etude expérimentale de l'influence de la température sur le déroulement du développement embryonnaire de la Seiche Sepia officinalis L. (Céphalopode, Sepioidae). Cahiers Biol. Mar. 31: 131–145.

    Google Scholar 

  • Caverivière A., Domain F. and Diallo A. 1999. Observations of the influence of temperature on the length of embryonic development in Octopus vulgaris (Senegal). Aquat. Living Res. 12: 151–154.

    Article  Google Scholar 

  • Clarke A., Rodhouse P.A., Holmes L.J. and Pascoe P.J. 1989. Growth rate and nucleic acid ratio in cultured cuttlefish Sepia officinalis (Mollusca: Cephalopoda). J. Exp. Mar. Biol. Ecol. 133: 229–240.

    Article  Google Scholar 

  • Choe S. 1966. On the eggs, habits of the fry and growth of some cephalopoda. Bull. Mar. Sci. 16: 330–348.

    Google Scholar 

  • DeRusha R.H., Forsythe J.W., DiMarco F.P. and Hanlon R.T. 1989. Alternative diets for maintaining and rearing cephalopods in captivity. Lab. Anim. Sci. (American Association for Laboratory Animal Science) 39: 306–312.

    CAS  Google Scholar 

  • Domingues P.M. 1999. Development of alternative diets for the mass culture of the European cuttlefish Sepia officinalis. Ph.D. Thesis.University of the Algarve, 95 pp.

  • Domingues P.M., Kingston T., Sykes A. and Andrade J.P. 2001a. Growth of young cuttlefish, Sepia officinalis (Linnaeus, 1758) at the upper end of the biological distribution temperature range. Aquacul. Res. 32: 923–930.

    Article  Google Scholar 

  • Domingues P.M., Sykes A. and Andrade J.P. 2001b. The use of artemia or mysids as food for hatchlings of the cuttlefish Sepia officinalis Linnaeus, 1758; effects on growth and survival throughout the life cycle. Aquacult. Int.: 9: 319–331.

    Article  Google Scholar 

  • Domingues P.M., Sykes A. and Andrade J.P. 2002. The effects of temperature in the life cycle of two consecutive generations of the cuttlefish Sepia officinalis (Linnaeus, 1758), cultured in the Algarve (South Portugal). Aquacult. Int.: 10: 207–220.

    Article  Google Scholar 

  • Forsythe J.W., Hanlon R.T. and DeRusha R.H. 1991. Pilot large-scale culture of Sepia in biomedical research. In: Boucaud-Camou E. (ed) The Cuttlefish. Centre de publications de l'Université de Caen, pp. 313–323.

  • Forsythe J.W., DeRusha R.H. and Hanlon R.T. 1994. Growth, reproduction and life span of Sepia officinalis (Cephalopoda: Mollusca) cultured through seven consecutive generations. J. Zool. Lond. 233: 175–192.

    Google Scholar 

  • Hanley J.S., Smolowitz R., Bullis R.A., Mebane W.N., Gabr H.R. and Hanlon R.T. 1998. Modified laboratory culture techniques for the European cuttlefish Sepia officinalis. Biol. Bull. Mar. Biol. Lab. Woods Hole 195: 223–225.

    CAS  Google Scholar 

  • Koueta N. and Boucaud-Camou E. 1999. Food intake and growth in reared early juvenile cuttlefish Sepia officinalis L. (Mollusca: Cephalopoda). J. Exp. Mar. Biol. Ecol. 240: 93–109.

    Article  Google Scholar 

  • Koueta N., Boucaud-Camou E. and Noel B. 2002. Effects of enriched natural diet on survival and growth of juvenile cuttlefish Sepia officinalis L. Aquaculture 203: 293–310.

    Article  Google Scholar 

  • Lee P.G. 1994. Nutrition of cephalopods: fuelling the system. Mar. Freshwater Behav. Physiol. 25: 35–51.

    CAS  Google Scholar 

  • Lee P.G., Turk P.E., Forsythe J.W. and DiMarco F.P. 1998. Cephalopod culture: physiological, behavioral and environmental requirements. Suisanzoshoku 46: 417–422.

    Google Scholar 

  • Le Goeff R. and Daguzan J. 1991. Growth and life cycles of the cuttlefish Sepia officinalis L. (Mollusca: Cephalopoda) in South Brittany (France). Bull. Mar. Sci. 49: 341–348.

    Google Scholar 

  • Loi P.K. and Tublitz N.J. 1998. Long term rearing of cuttlefish in a small scale facility. Aquarium Sci. Conserv. 2: 1–9.

    Article  Google Scholar 

  • Mangold-Wirz K. 1963. Biologie des céphalopodes benthiques et nectoniques de la Mer Catalane. Vie et Milieu 13: 285.

    Google Scholar 

  • Navarro J.C. and Villanueva R. 2000. Lipid and fatty acid composition of early stages of cephalopods: an approach to their lipid requirements. Aquaculture 183: 161–177.

    Article  CAS  Google Scholar 

  • Okutani T. 1990. Squids, cuttlefish and octopuses. Mar. Behav. Physiol. 18: 1–17.

    Article  Google Scholar 

  • Pascual E. 1978. Crecimiento y alimentació n de tres generaciones de Sepia officinalis en cultivo. In-vestigación Pesquera 42: 421–442.

    Google Scholar 

  • Richard A. 1966. La temperature, facteur externe essentiel de croissance pour le céphalopode Sepia officinalis L. C.r. hebd. Séanc. Acad. Sci. Paris 263: 1138–1141.

    Google Scholar 

  • Richard A. 1971. Contribuition à l'étude expérimentale de la croissance et de la maturation sexuelle de Sepia officinalis L. (Mollusque, Céphalopode). Thèse no 248:Univ. Lille, 264 pp.

  • Richard A. 1975. L'elevage de la seiche (Sepia officinalis L., Mollusque, Céphalopode). In: Proceedings of the 10th European Symposium on Marine Biology, Ostend, Belgium. Vol. 1, pp. 359–380.

    Google Scholar 

  • Toll R.B. and Strain C.H. 1988. Freshwater and terrestrial food organisms as an alternative diet for laboratory culture of cephalopods. Malacologia 29: 195–200.

    Google Scholar 

  • Uauy R., Mena P. and Rojas C. 2000. Essential fatty acids in early life: structural and functional role. Proce. Nutr. Soc. 59: 3–15.

    Article  CAS  Google Scholar 

  • Villa H. 1998. Estudo de alguns aspectos da biologia reprodutiva da espécie Sepia officinalis (Linnaeus, 1758) na Ria Formosa. MSc Thesis.University of Algarve, 82 pp.

  • Warnke K. 1994. Some aspects of social interaction during feeding in Sepia officinalis (Mollusca: Cephalopoda) hatched and reared in the laboratory. Vie Millieu 44(2): 125–131.

    Google Scholar 

  • Zar J.H. 1984. In: McElroy W. and Swanson P. (ed) Biostatistical Analysis. Prentice-Hall, Englewood Cliffs, NJ, 619 pp.

    Google Scholar 

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Domingues, P., Sykes, A., Sommerfield, A. et al. Effects of feeding live or frozen prey on growth, survival and the life cycle of the cuttlefish, Sepia officinalis (Linnaeus, 1758). Aquaculture International 11, 397–410 (2003). https://doi.org/10.1023/B:AQUI.0000004195.92236.3a

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  • DOI: https://doi.org/10.1023/B:AQUI.0000004195.92236.3a

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