Tegumental ultrastructures of Echinoparyphium recurvatum according to developmental stages

  • Sohn, Woon-Mok (Department of Parasitology and Institute of Health Sciences, Gyeongsang National University College of Medicine) ;
  • Woo, Ho-Choon (Department of Veterinary, College of Agriculture, Cheju National University) ;
  • Hong, Sung-Jong (Department of Parasitology, College of Medicine, Chung-Ang University)
  • Published : 2002.06.01

Abstract

The present study was performed to observe tegumental ultrastructure of Echinoparyphium recurvatum according to developmental stages. Worms (1, 3, 5 and 15-day old) were recovered from chicks experimentally infected with metacercariae from radix auricularia coreana. One-day old worms were elongated and ventrally concave, and covered with peg-like tegumental spines except the adjacent areas of the head crown and excretory pore. Type I sensory papillae were distributed on the lip of the oral sucker, and grouped ciliated papillae were around the oral sucker. Peg-like tegumental spines were densely distributed on the anterior surface of the ventral sucker level. The ventral sucker had an aspinous tegument and no sensory papillae. Tegumental spines on the posterior surface of the ventral sucker level were sparsely distributed and disappeared posteriorly. In 3 and 5-day old worms, the tegument around the oral sucker was aspinose and wrinkled concentrically. The ventral sucker had a wrinkled tegument and many bulbous papillae. Type I sensory papillae were distributed between the bulbous papillae. Tegumental spines were spade-shaped with a terminal tip. A total of 45 collar spines including 4 end group ones on both ventral corners was alternately arranged in 2 rows. The 15-day old worms were very stout and their tegumental spines were tongue-shaped without a terminal tip, From the above results, it is confirmed that the surface ultrastructure of E. recurvatum was generally similar to that of other echinostomatid flukes. However, some features, i.e., morphological change of tegumental spines and appearence of sensory papillae on the ventral sucker according to development, and number, shape and arrangement of collar spines, were characteristic, which may be of taxonomic and bioecological significance.

Keywords

References

  1. Beaver PC, Jung RC, Cupp EW (1984) Clinical Parasitology. 9th ed. p460, Lea & Febiger, Philadelphia, USA
  2. Bennett CE (1975) Scanning electron microscopy of Fasciola hepatica L. during growth and maturation in the mouse. J Parasitol 61: 892- 898
  3. Chai JY, Guk SM, Han ET, et al. (2000) Surface ultrastructure of Metagonimus takahashii metacercariae and adults. Korean J Parasitol 38: 9-15
  4. Chai JY, Kang YJ, Choi SY, Guk SM, Yu JR, Lee SH (1998) Surface ultrastructure of Metagonimus miyatai metacercariae and adults. Korean J Parasitol 36: 217-225
  5. Chu JK, Cho YJ, Chung SB, Won BO, Yoon MB (1973) Study on the trematode parasites of the birds in Korea. Korean J Parasitol 22: 70- 75 (in Korea n)
  6. Fried B, Fujino T (1984) Scanning electron microscopy of Echinostoma revolutum (Trematoda) during development in the chick embryo and the domestic chick. Int J Parasitol 14: 75-81
  7. Fujino T, Ishii Y, Choi DW (1979) Surface ultrastructure of the tegument of Clonorchis sinensis newly excysted juveniles and adult worms. J Parasitol 65: 579-590
  8. Grabda-Kazubska B, Kiseliene V (1991) The life cycle of Echinoparyphium mordwilkoi Skrjabin, 1915 (Trematoda, Echinostomatidae). Acta Parasitol Polon 36: 167-173
  9. Hong SJ, Chai JY, Lee SH (1991) Surface ultrastucture of the developmental stage of Heterophyopsis continua (Trematoda: Heterophyidae). J Parasitol 77: 613-620
  10. Kiseliene V, Grabda-Kazubska B (1990) Echinoparyphium pseudorecurvatum sp. n. (Trematoda, Echinostomatidae) and its life cycle. Acta Parasisitol Polon 35: 285-295
  11. Køie M (1977) Stereoscan studies of cercariae, metacercariae and adults of Cryptocotyle lingua (Creplin, 1825) Fischoeder, 1903 (Trematoda: Heterophyidae). J Parasitol 63: 835-839
  12. Køie M (1987) Scanning electron microscopy of rediae, cercariae, metacercariae and adults of Mesorchis denticulatus (Rudolphi, 1802) (Trematoda: Echinostomatidae). Parasitol Res 73: 50-56
  13. Lee SH, Hong SJ, Chai JY, Hong ST, Seo BS (1986) Tegumental ultrastructures of Echinostoma hortense observed by scanning electron microscopy. Korean J Parasitol 24: 63-70 (in Korean)
  14. Lee SH, Hong SJ, Chai JY, Seo BS (1985) Studies on intestinal trematodes in Korea. XV. Tegumental ultrastructures of Fibricola seoulensis according to developmental stages. Seoul J Med 26: 52-63
  15. Lee SH, Kim SJ, Chai JY, Sohn WM (1989) Tegumental ultrastructure of Paragonimus iloktsuenensis according to the developmental stages. Korean J Parasitol 27: 57-66 (in Korean)
  16. Lee SH, Jun HS, Sohn WM, Chai JY (1992) Tegumental ultrastructure of juvenile and adult Echinostoma cinetorchis. Korean J Parasitol 30: 65-74 (in Korean)
  17. Lee SH, Sohn WM, Chai JY (1990) Echinostoma revolutum and Echinoparyphium recurvatum recovered from house rats in Yangyang-gun, Kangwon-do. Korean J Parasitol 28: 235-240
  18. Lee SH, Sohn WM, Hong ST (1987) Scanning electron microscopical findings of Echinochasmus japonicus tegument. Korean J Parasitol 25: 51-58
  19. Lee SM, Hong ST, Lee SH, Shim TS (1981) Ultrastructural study on the tegument of juvenile and adult Paragonimus westermani. Chung-Ang J Med 6: 579-585 (in Korean)
  20. Morris GP, Threadgold LT (1967) A presumed sensory structure associated with the tegument of Schistosoma mansoni. J Parasitol 53: 537-539
  21. Smales LR, Blankespoor HD (1984) Echinostoma revolutum (Froelich, 1802) Looss, 1899 and Isthmiophora melis (Schrank, 1788) Luhe, 1909 (Echinostomatinae, Digenea): Scanning electron microscopy of the tegumental surfaces. J Helminthol 58: 187-195
  22. Sohn WM (1998) Life history of Echinoparyphium recurvatum (Trematoda: Echinostomatidae) in Korea. Korean J Parasitol 36: 91-98
  23. Torii M, Tsuboi T, Hirai K, Nishida H (1989) Ultrastructure of sensory receptors of adult Echinostoma hortense (Trematoda: Echinostomatidae). Jpn J Parasitol 38: 353-360