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The responses of Scrobicularia plana (da Costa) to osmotic pressure changes

Published online by Cambridge University Press:  11 May 2009

R. F. H. Freeman
Affiliation:
From the Department of Zoology, Queen Mary College, University of London, and the Plymouth Laboratory
F. H. Rigler
Affiliation:
From the Department of Zoology, Queen Mary College, University of London, and the Plymouth Laboratory

Extract

The osmotic pressure of the blood of Scrobicularia plana has been measured when the animal is exposed to diluted sea water, and observations made on the behaviour of the animal when exposed to solutions of different osmotic pressure.

The blood osmotic pressure shows no significant difference to that of the external medium except in very low salinities. The external medium with which an animal in its natural habitat comes into equilibrium is represented by the water above the mud rather than the water contained in the mud. Open animals equilibrate to 80% sea water in 4–5 h and to 60% sea water in 5–6 h. The osmotic pressure of the blood of animals that remain closed in dilute media is decreased by as little as 1·5% per hour.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 1957

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References

Chapman, G. & Newell, G. E., 1956. The rôle of the body fluid in the movement of soft-bodied invertebrates. II. The extension of the siphons of My a arenaria L. and Scrobicularia plana (da Costa). Proc. roy. Soc. B, Vol. 145, pp. 564—80.Google Scholar
Green, J., 1957. The growth of Scrobicularia plana (da Costa) in the Gwendraeth estuary. J. mar. biol. Ass. U.K., Vol. 36, pp. 41–7.CrossRefGoogle Scholar
Gross, W. J., 1954. Osmotic responses in the sipunculid Dendrostomum zostericolum. J. exp. Biol., Vol. 31, pp. 402–23.CrossRefGoogle Scholar
Hughes, G. M. & Kerkut, G. A., 1956. Electrical activity in a slug ganglion in relation to the concentration of Locke solution. J. exp. Biol., Vol. 33, pp. 282–94.CrossRefGoogle Scholar
Jacobs, M. H., 1935. Diffusion processes. Ergebn. Biol., Bd. 12, pp. 1160.Google Scholar
Jones, L. L., 1941. Osmotic regulation in several crabs of the Pacific coast of North America. J. cell. comp. Physiol., Vol. 18, pp. 7992.CrossRefGoogle Scholar
Kerkut, G. A. & Taylor, B. J. R., 1956. The Sensitivity Of The Pedal Ganglion Of The Slug To Osmotic Pressure Changes. J. exp. Biol., Vol. 33, pp. 493501.CrossRefGoogle Scholar
Maloeuf, N. S. R., 1938. Studies On The Respiration (And Osmoregulation) Of Animals. I. Aquatic Animals Without An Oxygen Transporter In The Internal Medium. Z. vergl. Physiol., Bd. 25, pp. 128.CrossRefGoogle Scholar
Milne, A., 1938. The ecology of the Tamar estuary. III. Salinity and temperature conditions in the lower estuary. J. mar. biol. Ass. U.K., Vol. 22, pp. 6887.CrossRefGoogle Scholar
Morton, J. E., Boney, A. D. & Corner, E. D. S., 1957. The adaptations of Lasaea rubra (Montagu), a small intertidal lamellibranch. J. mar. biol. Ass. U.K., Vol. 36, pp. 383–4°5.CrossRefGoogle Scholar
Newell, G. E., 1954. The marine fauna of Whitstable. Ann. Mag. nat. Hist., Ser. 12, Vol. 7, pp. 321–50.CrossRefGoogle Scholar
Percival, E., 1929. A Report On The Fauna Of The Estuaries Of The River Tamar And River Lynher. J. mar. biol. Ass. U.K., Vol. 16, pp. 81108.CrossRefGoogle Scholar
Prosser, C. L. (ed.), 1950. Comparative Animal Physiology. Philadelphia and London.Google Scholar
Robinson, R. A., 1954. The vapour pressure and osmotic equivalence of seawater. J. mar. biol. Ass. U.K., Vol. 33, pp. 449–55.CrossRefGoogle Scholar
Smith, R. I., 1956. The ecology of the Tamar estuary. VII. Observations on the interstitial salinity of intertidal muds in the estuarine habitat of Nereis diversicolor. J. mar. biol. Ass. U.K., Vol. 35, pp. 81104.CrossRefGoogle Scholar
Spooner, G. M. & Moore, H. B., 1940. The ecology of the Tamar estuary. VI. An account of the macrofauna of the intertidal muds. J. mar. biol. Ass. U.K., Vol. 24, pp. 283330.CrossRefGoogle Scholar
Woortmann, K. D., 1926. Beiträge zur Nervenphysiologie von Mytilus edulis. Z. vergl. Physiol., Bd. 4, pp. 488527.CrossRefGoogle Scholar