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Observations on the keeping of adult female Pseudocalanus elongatus under laboratory conditions

Published online by Cambridge University Press:  11 May 2009

C. J. Corkett
Affiliation:
Chelsea College of Science and Technology
D. L. Urry
Affiliation:
Chelsea College of Science and Technology

Extract

Stocks of adult female Pseudocalanus elongatus have been kept for the past 6 years in a laboratory remote from the sea. The techniques used in maintaining these stocks are described.

The most suitable temperature for keeping the copepods has been found to be 10 °C.

The control of pH has not been necessary.

Although an allowance of 30 ml. of sea water for each copepod is recommended, it has been found that survival is not affected by densities of up to 1 copepod/10 ml.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 1968

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References

REFERENCES

Atkins, W. R. G., 1922 a. The hydrogen ion concentration of sea water in its biological relations. Part 1. J. mar. biol. Ass. U.K., Vol. 12, pp. 717–53.CrossRefGoogle Scholar
Atkins, W. R. G., 1922 b. The respirable organic matter of sea water. J. mar. biol. Ass. U.K., Vol. 12, pp. 772–80.CrossRefGoogle Scholar
Atkins, W. R. G. & Jenkins, P. G., 1952. Note on sea temperatures in the English Channel, 1921 to 1949, and Plymouth sunshine and light. J. mar. biol. Ass. U.K., Vol. 31, pp. 327–33.CrossRefGoogle Scholar
Conover, R. J., 1962. Metabolism and growth in Calanus hyperboreus in relation to its life-cycle. Rapp. Cons. int. Explor. Mer, Vol. 153, pp. 190–7.Google Scholar
Corner, E. D. S., 1961. On the nutrition and metabolism of zooplankton.I.Preliminary observations on the feeding of the marine copepod, Calanus helgolandicus (Claus). J. mar. biol. Ass. U.K., Vol. 41, pp. 516.CrossRefGoogle Scholar
Crawshay, L. R., 1915. Notes on experiments in the keeping of plankton animals under artificial conditions. J. mar. biol. Ass. U.K., Vol. 10, pp. 555–76.CrossRefGoogle Scholar
Cviic, V., 1953. The bactericidal and bacteriostatic action of antibiotics on marine bacteria. I. Penicillin and streptomycin. Acta adriat., Vol. 5, pp. 135–66.Google Scholar
Fuller, J. L., 1937. Feeding rate of Calanus finmarchicus in relation to environmental conditions. Biol. Bull. mar. biol. Lab., Woods Hole, Vol. 72, pp. 233–46.CrossRefGoogle Scholar
Gauld, D. T., 1951. The grazing rate of planktonic copepods. J. mar. biol. Ass. U.K., Vol. 29, pp. 695706.CrossRefGoogle Scholar
Marshall, S. M., Nicholls, A. G, & Orr, A. P., 1935. On the biology of Calanus finmarchicus. VI. Oxygen consumption in relation to environmental conditions. J. mar. biol. Ass. U.K., Vol. 20, pp. 127.CrossRefGoogle Scholar
Marshall, S. M. & Orr, A. P., 1955 a. The Biology of a Marine Copepod, Calanus finmarchicus (Gunnerus). 188 pp. Edinburgh: Oliver and Boyd.Google Scholar
Marshall, S. M. & Orr, A. P., 1955 b. On the biology of Calanus finmarchicus. VIII. Food uptake, assimilation and excretion in adult and stage V Calanus. J. mar. biol. Ass. U.K., Vol. 34, pp. 495529.CrossRefGoogle Scholar
Provasoli, L., Shiraishi, K. & Lance, J. R., 1959. Nutritional idiosyncrasies of Artemia and Tigriopus in monoxenic culture. Ann. N.Y. Acad. Sci., Vol. 77, pp. 250–61.CrossRefGoogle Scholar
Rae, K. M., 1960. Parameters of the marine environment. In Perspectives in Marine Biology, edited by A., Buzzati-Traverso. University of California Press.Google Scholar
Raymont, J. E. G. & Gross, F., 1942. On the feeding and breeding of Calanus finmarchicus under laboratory conditions. Proc. roy. Soc. Edinb., Vol. 61, pp. 267–87.Google Scholar
Spencer, C. P., 1952. On the use of antibiotics for isolating bacteria-free cultures of marine phytoplankton organisms. J. mar. biol. Ass. U.K., Vol. 31, pp. 97106.CrossRefGoogle Scholar
Urry, D. L., 1965. Observations on the relationship between the food and survival of Pseudocalanus elongatus in the laboratory. J. mar. biol. Ass. U.K., Vol. 45, pp. 4958.CrossRefGoogle Scholar
Zillioux, E. J. & Wilson, D. F., 1964. On the survival and propagation of Acartia tonsa in laboratory culture. Contrib. Paper, 27th. A. Meeting Am. Soc. Limnol. Oceanogr., Miami.Google Scholar
Zillioux, E. J. & Wilson, D. F., 1966. Culture of a planktonic calanoid copepod through multiple generations. Science, N.Y., Vol. 151, No. 3713, pp. 996–8.CrossRefGoogle ScholarPubMed