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Some quantitative aspects of feeding in sabellid and serpulid fan worms

Published online by Cambridge University Press:  11 May 2009

R. Phillips Dales
Affiliation:
Bedford College, University of London

Extract

The rate of filtering has been examined in a series of sabellids and serpulids of widely different size, using suspensions of colloidal graphite and algal cultures. The filtering rates have been expressed as individual rates, as the volume strained per unit fresh weight, and per unit weight of the crown. It may be concluded that the smaller fan worms filter at a relatively higher rate than the larger. This is achieved partly by the relatively larger crown. Free swimming algae escape through the crown; only inert particles down to 1–2 μA are retained, implying that fan worms depend on suspended detritus alone. The filtering rates are briefly compared with those of Chaetopterus and some other filter-feeding invertebrates.

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

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References

Ballantine, D. & Morton, J. E., 1956. Filtering, feeding, and digestion in the lamellibranch Lasaea rubra. J. mar. biol. Ass. U.K., Vol. 35, pp. 241–74.Google Scholar
Ewer, R. F. & Fox, H. M., 1940. On the function of chlorocruorin. Proc. roy. Soc. B, Vol. 129, PP 137–53Google Scholar
Johansson, K. E., 1927. Beiträge zur Kenntnis der Polychaeten-Familien Hermellidae, Sabellidae und Serpulidae. Zool. Bidr. Uppsala, Bd. 11, pp. 1183.Google Scholar
Jørgensen, C. B., 1943. On the water transport through the gills of bivalves. Acta physiol. scand., Vol. 5, pp. 297304.CrossRefGoogle Scholar
Jørgensen, C. B., 1949. The rate of feeding by Mytilus in different kinds of suspension. J. mar. biol. Ass. U.K., Vol. 28, pp. 333–44.CrossRefGoogle Scholar
Jørgensen, C. B., 1955. Quantitative aspects of filter feeding in invertebrates. Biol. Rev., Vol. 30, pp. 391454.CrossRefGoogle Scholar
Macginitie, G. E., 1939. The method of feeding of Chaetopterus. Biol. Bull., Woods Hole, Vol. 77, pp. 115–18.CrossRefGoogle Scholar
Nicol, E. A. T., 1930. The feeding mechanism, formation of the tube, and physiology of digestion in Sabella pavonina. Trans, roy. Soc. Edirib., Vol. 56, pp. 537–98.Google Scholar
Robertson, J. D. & Pantin, C. F. A., 1938. Tube formation in Pomatoceros triqueter (L.). Nature, Lond., Vol. 141, pp. 648–9.CrossRefGoogle Scholar
Soulier, A., 1891. Etudes sur quelques points de l'anatomie des Anndlides tubicoles de la region de Cette. Trav. Inst. Zool. Univ. Montpellier, T. 2, pp. 1310.Google Scholar
Thomas, J. G., 1940. Pomatoceros, Sabella and Amphitrite. L.M.B.C. Memoirs, No. 33, 88 pp. Liverpool: University Press.Google Scholar
Wells, G. P., 1952. The respiratory significance of the crown in the polychaete worms Sabella and Myxicola. Proc. roy. Soc. B, Vol. 140, pp. 7082.Google Scholar
Wells, G. P. & Dales, R. P., 1951. Spontaneous activity patterns in animal behaviour: the irrigation of the burrow in the polychaetes Chaetopterus variopedatus Renier and Nereis diversicolor O. F. Miiller. J. mar. biol. Ass. U.K., Vol. 29, pp. 661–80.CrossRefGoogle Scholar
Wilson, D. P., 1936. The development of the sabellid Branchiomma vesciculosum. Quart. J. micr. Sci., Vol. 78, pp. 543603.Google Scholar
Wilson, D. P., 1949. Notes from the Plymouth Aquarium. J. mar. biol. Ass. U.K., Vol. 28, PP 345–51.CrossRefGoogle Scholar