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Vitelline gland histochemistry in the commensal temnocephalid Paracaridinicola platei (Fernando, 1952) Baer, 1953, together with some notes on the egg

Published online by Cambridge University Press:  05 June 2009

W. R. Breckenridge
Affiliation:
Department of Zoology, University of Peradeniya, Peradeniya, Sri Lanka
Shirani Nathanael
Affiliation:
Department of Zoology, University of Peradeniya, Peradeniya, Sri Lanka

Abstract

Histochemical tests indicate the presence of tanning precursors namely protein, phenols and phenolase in the vitelline glands of the temnocephalid Paracaridinicola platei. This suggests the occurrence of a tanned egg shell in this organism, a feature it shares with many other parasitic and free living platyhelminths. The large eggs are laid singly and are attached to the gill lamellae of the host.

Type
Research Papers
Copyright
Copyright © Cambridge University Press 1988

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References

REFERENCES

Arfin, M. & Nizami, W. A. (1986) Chemical nature and mode of stabilization of egg shell/capsule of some cyclophyllidean cestodes. Journal of Helminthology, 60, 105112.CrossRefGoogle Scholar
Baer, J. G. (1953) Zoological results of the Dutch New Guinea Expedition 1939 No. 4, Temnocephales. Zoölogische Mededeelingen, 32, 119139.Google Scholar
Baer, J. G. (1961) Classe des Temnocéphales. In: Traité de Zoologie, Tome IV (Plathelminthes, Mésozoaires Acanthocephales, Némertiens). (editor, Grassé, P. P.) pp. 213241. Masson: Paris.Google Scholar
Bhagavathiammai, A. & Ramalingam, K. (1986) Studies on the enzyme phenol oxidase in a freshwater monogenetic trematode. Journal of Helminthology, 60, 201209.CrossRefGoogle Scholar
Breckenridge, W. R. (1968) The histophysiology of growth and reproduction in Hymenolepis diminuta (Rudolphi, 1819) Ph.D Thesis. McGill University, Canada, pp. 228.Google Scholar
Breckenridge, W. R. (1985) Vitelline gland histochemistry in a temnocephalid Paracaridinicola platei Fernando 1952. Proceedings of the Sri Lanka Association for the Advancement of Science. Part 1, 71. (Abstract).Google Scholar
Bunke, D. (1972) Sklerotin–Komponenten in den Vitellocyten von Microdalyellia fairchildi (Turbellaria). Zeitschrift für Zellforschung ünd Mikroskopische Anatomie, 135, 383398.CrossRefGoogle ScholarPubMed
Bunke, D. (1981) Ultrastruktur–Untersuchungen an Vitellocyten von Microdalyellia fairchildi. (Turbellaria, Neorhabdocoela). Zoomorphology, 99, 7186.CrossRefGoogle Scholar
Bunke, D. (1982) Ultrastruktur–Untersuchungen zur Eischalenbildung bei Microdalyellia fairchildi (Turbellaria). Zoomorphology, 101, 6170.CrossRefGoogle Scholar
Dixon, K. E. (1965) The structure and histochemistry of the cyst wall of the metacercaria of Fasciola hepatica L. Parasitology, 55, 215226.CrossRefGoogle ScholarPubMed
Domenici, L. & Gremigni, V. (1974) Electron microscopical and cytochemical study of vitelline cells in the freshwater triclad Dugesia lugubris s. I. II. Origin and distribution of reserve materials. Cell & Tissue Research, 152, 219228.CrossRefGoogle Scholar
Fernando, W. (1934) Studies on the Temnocephaloidea. 1. The female reproductive apparatus in Caridinicola indica and Monodiscus parvus. Proceedings of the Zoological Society of London, 251–257.CrossRefGoogle Scholar
Fernando, W. (1945) The storage of glycogen in the Temnocephaloidea. Journal of Parasitology, 31, 185190.CrossRefGoogle Scholar
Fernando, W. (1952) Studies on the Temnocephalids of Ceylon 1. Caridinicola platei sp. nov. Ceylon Journal of Science, 25, 1922.Google Scholar
Gremigni, V. & Domenici, L. (1974) Electron microscopical and cytochemical study of vitelline cells in the freshwater triclad Dugesia lugubris s. 1. I. Origin and morphogenesis of cocoonshell globules, Cell & Tissue Research, 150, 261270.CrossRefGoogle ScholarPubMed
Hubschman, J. H. (1962) A simplified Azan process well suited for crustacean tissue. Stain Technology, 37, pp. 379380.CrossRefGoogle ScholarPubMed
Humason, G. L. (1967) Animal Tissue Technique. W. H. Freeman and Company, San Francisco and London.Google Scholar
Ishida, S. & Teshirogi, W. (1986) Egg shell formation in polyclads (Turbellaria). Hydrobiologia, 132, pp. 127135.CrossRefGoogle Scholar
Jennings, J. B. (1968a) A new temnocephalid flatworm from Costa Rica. Journal of Natural History, 2, 117120.CrossRefGoogle Scholar
Jennings, J. B. (1968b) Feeding, digestion and food storage in two species of temnocephalid flatworms (Turbellaria: Rhabdocoela). Journal of Zoology 156, 18.CrossRefGoogle Scholar
Johri, L. N. & Smyth, J. D. (1956) A histochemical approach to the study of helminth morphology. Parasitology, 46, 107116.CrossRefGoogle Scholar
Kearn, G. C. (1986) The Eggs of Monogeneans. Advances in Parasitology, 25, 175273.CrossRefGoogle ScholarPubMed
Llewellyn, J. (1965) The evolution of parasitic Platyhelminths. In: Evolution of Parasites (editor, Taylor, Angela E. R.) pp. 4778. Blackwell Scientific Publications, Oxford.Google Scholar
Madhavi, R. (1966) Egg-shell in Paramphistomatidae (Trematoda: Digenea). Experientia 22, 93.CrossRefGoogle Scholar
Madhavi, R. (1968) Diplodiscus mehrai: Chemical nature of egg shell. Experimental Parasitology, 23, 392397.CrossRefGoogle Scholar
Nieland, M. L. (1968) Electron microscope observations on the egg of Taenia taeniaeformis. Journal of Parasitology, 54, 957969.CrossRefGoogle ScholarPubMed
Pearse, A. G. E. (1968) Histochemistry. Theoretical and Applied. J. and A. Churchill Limited, London.Google Scholar
Pence, D. B. (1970) Electron microscope and histochemical studies on the eggs of Hymenolepis diminuta. Journal of Parasitology, 56, pp. 8497.CrossRefGoogle ScholarPubMed
Ramalingam, K. (1973) The chemical nature of the egg-shell of helminths, 1. Absence of quinone tanning in the egg-shell of the liver fluke, Fasciola hepatica. International Journal for Parasitology, 3, 6775.CrossRefGoogle ScholarPubMed
Smyth, J. D. (1966) The Physiology of Trematodes. London: Oliver & Boyd.Google Scholar
Smyth, J. D. (1969) The Physiology of Cestodes. London: Oliver & Boyd.Google Scholar
Smyth, J. D. & Clegg, J. A. (1959) Egg-shell formation in trematodes and cestodes. Experimental Parasitology, 8, 286323.CrossRefGoogle ScholarPubMed
Spicer, S. S., Horn, G. R. & Leppi, J. T. (1967) Histochemistry of connective tissue mucopolysaccharides. In: The Connective Tissue. International Academy of Pathology, Monograph No. 7. The Williams and Wilkins Company, Baltimore, pp. 251303.Google Scholar
Wharton, D. A. (1983) The production and functional morphology of helminth egg shells. Parasitology, 86, 8597.CrossRefGoogle ScholarPubMed
Williams, J. B. (1981) Classification of Temnocephaloidea (Platyhelminthes). Journal of Natural History, 15, 277299.CrossRefGoogle Scholar