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Life cycle of a new echinostome from Egypt, Echinostoma liei sp.nov. (Trematoda: Echinostomatidae)

Published online by Cambridge University Press:  06 April 2009

U. Jeyarasasingam
Affiliation:
The G. W. Hooper Foundation, University of California, San Francisco, California 94122
D. Heyneman
Affiliation:
The G. W. Hooper Foundation, University of California, San Francisco, California 94122
Hok-Kan Lim
Affiliation:
The G. W. Hooper Foundation, University of California, San Francisco, California 94122
Noshy Mansour
Affiliation:
The G. W. Hooper Foundation, University of California, San Francisco, California 94122

Extract

A 37-spined Egyptian echinostome, Echinostoma liei sp.nov., is described in adult and larval stages. The parasite develops readily in the laboratory in chicks and ducklings, hamsters and rats. Its natural final host in or near irrigation ditches of the Nile delta involves the roof rat, Egyptian giant shrew and aquatic bird hosts. Developmental forms are described from infection of the NIH strain of Biomphalaria glabrata in the laboratory. B. alexandrina, is infected in the normal habitat in Egypt and contains both developmental stages in the heart or aorta and the hepatopancreas, and metacercariae encyst in the pericardium and kidney. E. liei sp.nov. is one of six very similar species characterized by 37 collar spines with a pattern of (3 + 2) corner spines in each lappet, six laterals on each side, and 15 dorsals in alternating rows; two pairs of dorsoventral and one small pair of ventro-lateral finfolds on the cercarial tail; and rodlike cystogenous material filling the cercarial encystation glands. In addition to distinctive intermediate-host specificity, differentiating characteristics of E. liei cercariae include presence of six sets of three flame cells each per side (total 36), seven oesophageal cells, eight penetration gland outlets on the dorsal lip of the oral sucker, and an absence of paraoesophageal gland cells as determined by intravital dyes. Significance of these and other cercarial traits is emphasized to aid in defining highly similar, but none the less distinct, sibling species.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1972

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References

Azim, M. A., (1930). On the identification and life history of Echinostomum recurvatum von Linstow, 1873. Annals of Tropical Medicine and Parasitology 24, 189–92.Google Scholar
Beaver, P. C., (1937). Experimental studies on Echinostoma revolutum (Froelich) a fluke from birds and mammals. University of Illinois Bulletin 34, 196 (Illinois Biological Monographs 15, 1–96), Urbana, Illinois.Google Scholar
Bras, G., Bonne, C., & Lie, K. J., (1953). Five echinostomes found in man in Malayan Archipelago. American Journal of Digestive Diseases 20, 1216.Google Scholar
Chapman, H. D., & Wilson, R. A., (1970). The distribution and fine structure of the integumentary papillae of the cercaria of Himasthla secunda (Nicoll). Parasitology 61, 219–27.Google Scholar
Chernin, E., & Dunavan, C. A., (1962). The influence of host-parasite dispersion upon the capacity of Schistosoma mansoni miracidia to infect Australorbisus glabratus. American Journal of Tropical Medicine and Hygiene 11, 455–71.Google Scholar
Heyneman, D., & Umathevy, T., (1966). Differentiation of trematode cercariae of the genus Plagiorchis by use of the patterns of their argentophilic cuticular structures. Medical Journal of Malaya 20, 353–4.Google Scholar
Heyneman, D., & Umathevy, T., (1968). Interaction of trematodes by predation within natural double infections in the host snail Indoplanorbis exustus. Nature 217, 283–5.Google Scholar
Hsu, K. D., Lie, K. J., & Basch, P. F., (1968). The life history of Echinostoma rodriguesi sp.n. (Trematoda: Echinostomatidae). Journal of Parasitology 54, 333–9.Google Scholar
Johnston, T. H., & Muirhead, N. C., (1949). Larval trematodes from Australian freshwater molluscs. Part XIV. Transactions of the Royal Society of South Australia 73, 102–8.Google Scholar
Khalil, M., & Abaza, M. S., (1924). A new trematode parasite of the rat, Echinostoma aegyptiaca, nov.sp. Reports and Notes of the Public Health Laboratories, Cairo 6, 187–9.Google Scholar
Kuntz, R. E., (1953). Development of the cercaria of Echinoparyphium recurvatum (Linstow, 1873) Lühe, 1909, with emphasis on excretory system. Thapar Commemoration Volume, pp. 149–58.Google Scholar
Lie, K. J., (1963). The life history of Echinostoma malayanum Leiper, 1911. Tropical and Geographical Medicine 15, 1724.Google ScholarPubMed
Lie, K. J., (1964 a). Studies on Echinostomatidae (Trematoda) in Malaya. VI. The life history of Hypoderaeum dingeri n.sp. Tropical and Geographical Medicine 16, 6171.Google Scholar
Lie, K. J., (1964 b). Studies on Echinostomatidae (Trematoda) in Malaya. VII. The life history of Echinostoma lindoense Sandground & Bonne, 1940. Tropical and Geographical Medicine 16, 7281.Google Scholar
Lie, K. J., (1965). Studies on Echinostomatidaa (Trematoda) in Malaya. IX. The Mehlis' gland complex in echinostomes. Journal of Parasitology 51, 789–92.Google Scholar
Lie, K. J., (1966 a). Studies on Echinostomatidae (Trematoda) in Malaya. XIII. Integumentary papillae on six species of echinostome cercariae. Journal of Parasitology 52, 1041–8.Google Scholar
Lie, K. J., (1966 b). Studies on Echinostomatidae (Trematoda) in Malaya. XIV. Body gland cells in cercariae of Echinostoma audyi Lie & Umathevy and E. lindoense Sandground & Bonne. Journal of Parasitology 52, 1049–51.Google Scholar
Lie, K. J., (1967). Studies on Echinostomatidae (Trematoda) in Malaya. XV. The life history of Echinostoma murinum (Tubangui, 1931). Proceedings of The Helminthological Society of Washington 34, 139–43.Google Scholar
Lie, K. J., (1968). Further studies on the life history of Echinostoma lindoense Sandground & Bonne, 1940 (Trematoda: Eehinostomatidae) with a report of its occurrence in Brazil. Proceedings of The Helminthological Society of Washington 35, 4477.Google Scholar
Lie, K. J., (1969). A possible biological control of schistosomiasis and other trematodes in snails. In Proceedings, Seminar on Trematode Diseases, 4th Southeast Asian Regional Meeting on Parasitology and Tropical Medicine,Manila,1969.Google Scholar
Lie, K. J., & Basch, P. F., (1966). Life history of Echinostoma barbosai sp.n. (Trematoda: Echinostomatidae). Journal of Parasitology 52, 1052–7.Google Scholar
Lie, K. J., & Basch, P. F., (1967 a). The life history of Paryphostomum segregatum, Dietz, 1909. Journal of Parasitology 53, 280–6.Google Scholar
Lie, K. J., & Basch, P. F., (1967 b). The life history of Echinostoma paraensei sp.n. (Trematoda: Echinostomatidae). Journal of Parasitology 53, 1192–9.Google Scholar
Lie, K. J., Basch, P. F., Heyneman, D., Beck, A. J., & Audy, J. R., (1968). Implications for trematode control of interspecific larval antagonism within snail hosts. Transactions of The Royal Society of Tropical Medicine and Hygiene 62, 299319.Google Scholar
Lie, K. J., Kwo, E. H., & Ow-Yang, C. K., (1970). A field trial to test the possible control of Schistosoma spindale by means of interspecific trematode antagonism. Southeast Asian Journal of Tropical Medicine and Public Health 1, 1928.Google Scholar
Lie, K. J., & Umathevy, T., (1965 a). Studies on Echinostomatidae (Trematoda) in Malaya. VIII. The life history of Echinostoma audyi sp.n. Journal of Parasitology 51, 781–8.Google Scholar
Lie, K. J., & Umathevy, T., (1965 b). Studies on Echinostomatidae (Trematoda) in Malaya. X. The life history of Echinoparyphium dunni sp.n. Journal of Parasitology 51, 793–9.CrossRefGoogle Scholar
Lie, K. J., & Umathevy, T., (1966). Studies on Echinostomatidae (Trematoda) in Malaya. XI. The life history of Echinostoma hystricosum sp.n. Journal of Parasitology 52, 449–53.CrossRefGoogle Scholar
Looss, A., (1899). Weitere Beiträge zur Kenntnis der Trematoden-Fauna Aegyptens, zugleich Versuch einer naturlichen Gleiderung des Genus Distomum Retzius. Zoologisches Jahrbuch, Jena. Abteilung für Systematisches 12, 521784.Google Scholar
Mohandas, A., (1971). Integumentary papillae and their taxonomic importance in cercariae Zeitschrift für Parasitenkunde 35, 334–9.Google Scholar
Najarian, H. H., (1954). Developmental stages in the life cycle of Echinoparyphium flexum (Linton, 1892) Dietz, 1910 (Trematoda: Echinostomatidae). Journal of Morphology 94, 165–98.Google Scholar
Nasir, P., (1961). Observations on the life cycle of Echinostoma pinnicaudatum, n.sp., (Echinostomatidae: Trematoda). Proceedings of The Helminthological Society of Washington 28, 207–12.Google Scholar
Nasir, P., (1962). Further observations on the life cycle of Echinostoma nudicaudatum Nasir, 1960 (Echinostomatidae: Trematoda). Proceedings of The Helminthological Society of Washington 29, 115–27.Google Scholar
Patnaik, M. M., & RAY, S. K., (1966). On the life history and distribution of Echinostoma revolutum (Froleich [sic], 1802) in Orissa. Indian Veterinary Journal 43, 591600.Google Scholar
Pustovar, N. S., (1970). On species differentiation of larvae of the family Echinostomatidae. (In Russian, English summary.) Parasitology (Moscow) 4, 116–21.Google Scholar
Sandground, J. H., & Bonne, C., (1940). Echinostoma lindoense n.sp., a new parasite of man in the Celebes with an account of its life history and epidemiology. American Journal of Tropical Medicine 20, 511–35.Google Scholar
Shiff, C. J., (1969). Influence of light and depth on location of Bulinus (Physopsis) globosus by miracidia of Schistosoma haematobium. Journal of Parasitology 55, 108–10.Google Scholar
Sonsino, P., (1892). Studi sui parassiti di molluschi di acqua dolce nei dintorni di Cairo in Egitto. Festschrift zur 70. Geburtstage R. Leuckart's, Leipzig, pp. 134–46.Google Scholar