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The life-cycle of Echinoparyphium serratum sp.nov. (Digenea: Echinostomatidae)

Published online by Cambridge University Press:  06 April 2009

M. J. Howell
Affiliation:
Department of Zoology, The Australian National University, Canberra, Australia

Extract

Echinoparyphium serratum sp.nov., with 37 collar spines, is described from experimentally infected ducklings and chickens. It appears to be most closely related to E. aconiatum but differs from it in having smaller eggs, fewer tegument spines, almost confluent vitellaria in the post-testicular region, and the inner margin of the ventral sucker is serrated. The natural host is unknown but thought to be a bird.

Bile composition may account for the markedly different recovery percentages of adult worms from the two experimental hosts.

Miracidia hatch between 9 and 11 days at 22 °C. Experimental infections of snails with miracidia have not been obtained.

Rediae occur naturally in Isidorella brazieri Smith, and free-swimming cercariae encyst in the pericardium of the same species of snail.

This latter part of the life-cycle is based on strong circumstantial evidence. A few cysts were occasionally found in the pericardium of Lenameria sp. but the enclosed metacercariae were dead.

The cercaria can be distinguished from Cercaria echinata, the cercaria of E. aconiatum, and C. equispinosa in having cystogenous gland cells containing granular material only, and the inner margin of the ventral sucker serrated.

I would like to record my sincere thanks to Professor J. D. Smyth for his advice, and comments on the manuscript.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1968

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References

REFERENCES

Angel, L. M. (1967). The life cycle of Echinoparyphium hydromyos sp.nov. (Digenea: Echinostomatidae) from the Australian water rat. Parasitology 57, 1930.CrossRefGoogle Scholar
Beaver, P. C. (1937). Experimental studies on Echinostoma revolutum (Froelich), a fluke from birds and mammals. Illinois biol. Monogr. 15, 196.Google Scholar
Beaver, P. C. (1939). The morphology and life history of Petasiger nitidus Linton (Trematoda: Echinostomatidae). J. Parasit. 25, 269–76.CrossRefGoogle Scholar
Beaver, P. C. (1941). The life history of Echinochasmus donaldsoni n.sp., a trematode (Echinostomatidae) from the pied-billed grebe. J. Parasit. 27, 347–55.CrossRefGoogle Scholar
Donges, J. (1963). Die experimentelle Bestimmung der Anzahl der Rediengenerationen bei Trematoden. Naturwissenschaften 50, 103–4.CrossRefGoogle Scholar
Fallis, A. M. (1934). A note on some intermediate hosts of Echinostoma revolutum (Froelich). Proc. helminth. Soc. Wash. 1, 45.Google Scholar
Howell, M. J. (1968). Excystment and in vitro cultivation of Echinoparyphium serratum. Parasitology 58, 583–97.CrossRefGoogle ScholarPubMed
Johnson, J. C. (1920). The life cycle of Echinostoma revolutum (Froelich). Univ. Calif. Publs Zool. 19, 335–8.Google Scholar
Johnston, T. H. & Angel, L. M. (1949). The life cycle of Echinoparyphium ellisi from the black swan. Rec. S. Aust. Mus. 9, 247–54.Google Scholar
Khan, D. (1961). The life history of Echinostoma londonensis n.sp., the adult of Cercaria londonensis Khan, 1960. J. Helminth. 35, 119–32.CrossRefGoogle ScholarPubMed
Lie, K. J. (1964 a). Studies on Echinostomatidae (Trematoda) in Malaya. VI. The life history of Hypoderaeum dingeri n.sp. Trop. geogr. Med. 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. Trop. geogr. Med. 16, 7281.Google Scholar
Lie, K. J. & Umathevy, T. (1965 a). Studies on Echinostomatidae (Trematoda) in Malaya. VIII. The life history of Echinostoma audyi sp.n. J. Parasit. 51, 781–8.CrossRefGoogle Scholar
Lie, K. J. & Umathevy, T. (1965 b). Studies on Echinostomatidae in Malaya. X. The life history of Echinoparyphium dunni sp.n. J. Parasit. 51, 793–9.CrossRefGoogle Scholar
McCauley, J. E. & Pratt, I. (1960). The life history of Echinochasmus milvi Yamaguti, 1939. J. Parasit. 46, 15.Google Scholar
Martin, W. E. & Adams, J. E. (1961). Life cycle of Acanthoparyphium spinulosum Johnston, 1917 (Echinostomatidae: Trematoda). J. Parasit. 47, 777–82.CrossRefGoogle ScholarPubMed
Mathias, P. (1925). Recherches expérimentales sur le cycle évolutif de quelques trématodes. Bull. biol. Fr. Belg. 59, 1125.Google Scholar
Najarian, H. H. (1954). Developmental stages in the life cycle of Echinoparyphium flexum (Linton, 1892) Dietz, 1910 (Trematoda: Echinostomatidae). J. Morph. 94, 165–98.CrossRefGoogle Scholar
Nasir, P. (1960). Studies on the life history of Echinostoma nudicaudatum n.sp. (Echinostomatidae: Trematoda). J. Parasit. 46, 833–47.CrossRefGoogle ScholarPubMed
Rašín, K. (1933). Echinoparyphium recurvatum (Linstow, 1873) a jeho vývoj. (Echinoparyphium recurvatum (Linstow, 1873) und seine Entwicklung.) [German summary.] Biol. Spisy vys. Śk. věrolék., Brno 12, 1104. (Not seen.)Google Scholar
Sandground, J. H. & Bonne, C. (1940). Echinostoma lindoensis n.sp., a new parasite of man in the Celebes with an account of its life history and epidemiology. Am. J. trop. Med. 20, 511–35.CrossRefGoogle Scholar
Smyth, J. D. (1962). Lysis of Echinococcus granulosus by surface-active agents in bile and the role of this phenomenon in determining host specificity in helminths. Proc. R. Soc. B 156, 553–72.Google Scholar
Stunkard, H. W. (1966). The morphology and life history of the digenetic trematode, Himasthla littorinae sp.n. (Echinostomatidae). J. Parasit. 52, 367–72.CrossRefGoogle Scholar
Sudarikov, V. E. & Karmanova, E. M. (1960). Criodrilus lacrum as a second intermediate host for trematodes of the families Strigeidae and Echinostomatidae. (Russian text.) Trudy¯ gel'mint. Lab. 10, 231–34.Google Scholar
Tubangui, M. A. & Pasco, A. M. (1933). The life history of the human intestinal fluke, Euparyphium ilocanum (Garrison, 1908). Philipp. J. Sci. 51, 581606.Google Scholar
Uzmann, J. R. & Hayduck, S. H. (1964). Larval Echinochasmus (Trematoda: Echinostomatidae) in rainbow trout, Salmo gairdneri. J. Parasit. 50, 586.CrossRefGoogle ScholarPubMed
Wisniewski, W. L. (1958). The development cycle of Psilochasmus oxyuris Creplin, 1825. Acta parasit. pol. 6, 289307.Google Scholar