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A comparative study of the anatomy and behaviour of the oncomiracidia of the related monogenean gill parasites Kuhnia scombri, K. sprostonae and Grubea cochlear from mackerel, Scomber scombrus

Published online by Cambridge University Press:  11 May 2009

Ian D. Whittington
Affiliation:
School of Biological Sciences, University of East Anglia, Norwich, NR4 7TJ
Graham C. Kearn
Affiliation:
School of Biological Sciences, University of East Anglia, Norwich, NR4 7TJ

Abstract

The anatomy and behaviour of the oncomiracidia of Kuhnia scombri, K. sprostonae and Grubea cochlear, related mazocraeid monogeneans from the gill chamber of the mackerel, Scomber scombrus, caught off Plymouth are compared. K. sprostonae and G. cochlear are new records at Plymouth. The most important anatomical difference between these larvae is that those of Kuhnia spp. possess a pair of pigment-shielded eyes which are lacking in G. cochlear. The freshly hatched larvae of Kuhnia spp. are strongly photopositive but this response wanes after about 1 h in K. scombri and 1–5 h in K. sprostonae. No response to light was detected in larvae of G. cochlear. Most older larvae of Kuhnia spp. and of G. cochlear swim continuously upwards and downwards, even in ‘darkness’, indicating an alternation between positive and negative geotropism. The larvae of Kuhnia spp. possess angular cells (?) of unknown function close to the pharynx. The larvae of all three species contain prominent anterior glands and lipid droplets; the latter are depleted during their long free-swimming lives (up to 36 h in Kuhnia spp. at 13–14°C).

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 1990

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References

Bolster, G.C., 1974. The mackerel in British waters. In Sea Fisheries Research (ed. Jones, F.R.Harden), pp. 101116. London: Elek Science.Google Scholar
Bychowsky, B.E., 1957. Monogenetic Trematodes, their Systematics and Phylogeny. Moscow & Leningrad: Academy of Sciences, USSR. [In Russian.] English translation by Hargis, W.J. Jr. & Oustinoff, P.C. (1961). Washington: American Institute of Biological Sciences.Google Scholar
Euzet, L., 1957. Recherches sur les Monogenoidea parasites de poissons marins. Annales de Parasitologie Humaine et Comparée, 32, 469481.Google Scholar
Gallien, L. & Le Calvez, J., 1947. Description de la larve d'Octobothrium scombri v. Ben. Hesse trematode monogénétique marin. Bulletin de la Societe Zoologique de France, 72, 7678.Google Scholar
Kearn, G.C., 1978. Eyes with, and without, pigment shields in the oncomiracidium of the monogenean parasite Diplozoon paradoxum. Zeitschrift fur Parasitenkunde, 57, 3547.CrossRefGoogle Scholar
Kearn, G.C., 1980. Light and gravity responses of the oncomiracidium of Entobdella soleae and their role in host location. Parasitology, 81, 7189.CrossRefGoogle Scholar
Kearn, G.C., 1984. A possible ciliary photoreceptor in a juvenile polyopisthocotylean monogenean, Sphyranura sp. International Journal for Parasitology, 14, 357361.CrossRefGoogle Scholar
Llewellyn, J., 1957. The larvae of some monogenetic trematode parasites of Plymouth fishes. Journal of the Marine Biological Association of the United Kingdom, 36, 243259.CrossRefGoogle Scholar
Llewellyn, J., 1959. The larval development of two species of gastrocotylid trematode parasites from the gills of Trachurus trachurus. Journal of the Marine Biological Association of the United Kingdom, 38, 461467.CrossRefGoogle Scholar
Llewellyn, J., 1963. Larvae and larval development of monogeneans. Advances in Parasitology, 1, 287326.CrossRefGoogle ScholarPubMed
Llewellyn, J., Green, J.E. & Kearn, G.C., 1984. A check-list of monogenean (platyhelminth) parasites of Plymouth hosts. Journal of the Marine Biological Association of the United Kingdom, 64, 881887.CrossRefGoogle Scholar
Macdonald, S., 1977. A comparative study of the structure of the oncomiracidia of the monogenean gill parasites Diclidophora merlangi, D. luscae and D. denticulata. International Journal for Parasitology, 7, 113118.CrossRefGoogle Scholar
Marine Biological Association, 1957. Plymouth Marine Fauna, 3rd ed.Plymouth.Google Scholar
Rees, J.A., 1986. Studies on Adhesive Gland Systems in Monogeneans. PhD Thesis, University of East Anglia, Norwich.Google Scholar
Rohde, K., 1987. Grubea australis n. sp. (Monogenea, Polyopisthocotylea) from Scomber australasicus in southeastern Australia, and Grubea cochlear Diesing, 1858 from S. scombrus and S. japonicus in the Mediterranean and western Atlantic. Systematic Parasitology, 9, 2938.CrossRefGoogle Scholar
Sproston, N.G., 1946. A synopsis of the monogenetic trematodes. Transactions of the Zoological Society of London, 25,185600.CrossRefGoogle Scholar
Whittington, I.D., 1987 a. Hatching in two monogenean parasites from the common dogfish (Scyliorhinus canicula): the polyopisthocotylean gill parasite, Hexabothrium appendiculatum and the microbothriid skin parasite, Leptocotyle minor. Journal of the Marine Biological Association of the United Kingdom, 67, 729756.CrossRefGoogle Scholar
Whittington, I.D., 1987 b. A comparative study of the anatomy of the oncomiracidia of the hexabothriid monogeneans Rajonchocotyle emarginata and Hexabothrium appendiculatum. Journal of the Marine Biological Association of the United Kingdom, 67, 757772.CrossRefGoogle Scholar
Whittington, I.D. & Kearn, G.C., 1986. Rhythmical hatching and oncomiracidial behaviour in the hexabothriid monogenean Rajonchocotyle emarginata from the gills of Raja spp. Journal of the Marine Biological Association of the United Kingdom, 66, 93111.CrossRefGoogle Scholar
Whittington, I.D. & Kearn, G.C., 1989. Rapid hatching induced by light intensity reduction in the polyopisthocotylean monogenean Plectanocotyle gurnardi from the gills of gurnards (Triglidae), with observations on the anatomy and behaviour of the oncomiracidium. Journal of the Marine Biological Association of the United Kingdom, 69, 609624.CrossRefGoogle Scholar
Yamaguti, S. 1963. Systema Helminthum, vol. 4. Monogenea and Aspidocotylea. New York, London: Interscience Publishers.Google Scholar