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Studies on the host–parasite interface of strigeoid trematodes

V. Regional differentiation of the adhesive organ of Apatemon gracilis minor Yamaguti, 1933

Published online by Cambridge University Press:  06 April 2009

David A. Erasmus
Affiliation:
Department of Zoology, University College, Cardiff, Great Britain

Extract

The adhesive organ of Apatemon gracilis minor Yamaguti, 1933, consists of two lobes lying in a cup-shaped fore-body. The cytoplasmic tegument covering the apposing faces of the lobes is different from that covering their outer surfaces. The covering of the outer surface corresponds to the general tegument present on the rest of the body, whereas that on the inner surfaces is finely pitted and in certain regions is elevated to form a coarse reticulum. This specialized surface is covered externally by a plasma membrane and is in continuity with nucleated cell bodies lying below the basement layer. The cell bodies contain large quantities of granular endoplasmic reticulum as well as several Golgi complexes and numerous mitochondria. Masses of secretion bodies are present and these also occur in the extensions to the external tegument as well as within the external tegument of the lobes. When the parasite is attached the inner faces of the lobes come into contact with the vascular lamina propria of the host. The possible biological role of this specialized host–parasite interface is discussed and it is suggested that this surface specialization may form a morphological basis for the ‘placental’ function suggested for the adhesive organ by earlier workers.

The author wishes to acknowledge the research grant provided by the S.R.C. for the purchase of a vacuum coating unit and an AEI EM 6 electron microscope. The progress of this study was greatly facilitated by the excellent assistance of Mr T. Davies and Miss C. Green. The Stereoscan micrographs are published by permission of the Cambridge Instrument Company.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1969

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References

REFERENCES

Bennett, H. S. (1963). Morphological aspects of extracellular polysaccharides. J. Histochem. Cytochem. 11, 1423.CrossRefGoogle Scholar
Burton, P. R. (1964). The ultrastructure of the integument of the frog lung-fluke Haematoloechus medioplexus (Trematoda: Plagiorchiidae). J. Morph. 115, 305–18.CrossRefGoogle ScholarPubMed
Burton, P. R. (1966). The ultrastructure of the integument of the frog bladder fluke, Gorgoderina sp. J. Parasit. 52, 926–34.CrossRefGoogle ScholarPubMed
Erasmus, D. A. (1962). Studies on the adult and metacercaria of Holostephanus lühei Szidat, 1936. Parasitology 52, 353–74.CrossRefGoogle Scholar
Erasmus, D. A. (1967 a). Ultrastructural observations on the reserve bladder system of Cyathocotyle bushiensis Khan, 1962 (Trematoda: Strigeoidea) with special reference to lipid excretion. J. Parasit. 53, 525–36.CrossRefGoogle ScholarPubMed
Erasmus, D. A. (1967 b). The host–parasite interface of Cyathocotyle bushiensis Khan, 1962 (Trematoda: Strigeoidea). II. Electron microscope studies of the tegument. J. Parasit. 53, 703–14.CrossRefGoogle ScholarPubMed
Erasmus, D. A. (1968). The host–parasite interface of Cyathocotyle bushiensis Khan, 1962 (Trematoda: Strigeoidea) III. Electron microscope observations on non-specific phosphatase activity, Parasitology 58, 371–75.CrossRefGoogle Scholar
Erasmus, D. A. (1969). Studies on the host–parasite interface of strigeoid trematodes. IV. The ultrastructure of the lappets of Apatemon gracilis minor Yamaguti, 1933. Parasitology 59, 193201.CrossRefGoogle ScholarPubMed
Erasmus, D. A. & Öhman, C. (1963). The structure and function of the adhesive organ in strigeid trematodes. Ann. N.Y. Acad. Sci. 113, 735.CrossRefGoogle ScholarPubMed
Erasmus, D. A. & Öhman, C. (1965). Electron microscope studies of the gland cells and host–parasite interface of the adhesive organ of Cyathocotyle bushiensis Khan, 1962. J. Parasit. 51, 761–9.CrossRefGoogle ScholarPubMed
Öhman, C. (1965). The structure and function of the adhesive organ in strigeid trematodes. Part II. Diplostomum spathaceum Braun, 1893. Parasitology 55, 481502.CrossRefGoogle Scholar
Öhman, C. (1966 a). The structure and function of the adhesive organ in strigeid trematodes. Part III. Apatemon gracilis minor Yamaguti, 1933. Parasitology 56, 209–26.CrossRefGoogle Scholar
Öhman, C. (1966 b). The structure and function of the adhesive organ in strigeid trematodes. IV. Holostephanus lühei Szidat, 1936. Parasitology 56, 481–91.CrossRefGoogle Scholar
Threadgold, L. T. (1967). Electron microscope studies of Fasciola hepatica. III. Further observations on the tegument and associated structures. Parasitology 57, 633–7.CrossRefGoogle Scholar
Threadgold, L. T. (1968). The tegument and associated structures of Haplometra cylindracea. Parasitology 58, 17.CrossRefGoogle ScholarPubMed
van Haitsma, J. P. (1931). Studies on the trematode family Strigeidae (Holostomidae). No. xxii: Cotylurus flabelliformis (Faust) and its life history Pap. Mich. Acad. Sci. 13, 447–80.Google Scholar