Yıl: 2001 Cilt: 25 Sayı: 3 Sayfa Aralığı: 217 - 228 Metin Dili: İngilizce İndeks Tarihi: 29-07-2022

Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae)

Öz:
The histological development of the digestive system and swim bladder of Chalcalburnus tarichi larvae and their histology in adults were studied under light microscopy. After hatching, the digestive tract is a simple undifferentiated tube. Exogenous feeding started on the 6th day. The yolk sac was absorbed completely on the 9th day. The goblet cells appeared first in the bucco-pharyngeal cavity and oesophagus on the 4th day, in the anterior on the 9th day and in the posterior intestine on the 5th day. The digestive tract was differentiated as the buccal cavity, pharynx, oesophagus post-eosophageal swelling and intestine on the 5th day. At the same time, taste buds and pharyngeal teeth also started to form. In the oesophagus, the circular muscle was observed on the 9th day and the longitudinal muscle in one-year-old fish. In the intestine, the circular muscle was observed on the 35th day and the longitudinal muscle in two-year-old individuals. The wall of the digestive tract is composed of epithelial, submucosa, muscle and serosa layers. The liver lobules formed on the 3rd day and the cells began to reserve glycogen on the 10th day. The pancreatic acina formed on the 5th day and the tubular in one-year-old fish. The liver and pancreas ducts opened into the anterior intestine before the exogenous feeding started. The swim bladder was observed as one lobuled on the 4.5th day and two lobuled on the 35th day.
Anahtar Kelime: Cyprinidae swim bladder digestive system Cypriniformes morphology biological development aquatic animals organogenesis pancreas liver fishes oesophagus Chalcalburnus tarichi intestines larvae histology

Konular: Biyoloji

Chalcalburnus tarichi pallas, 1811 (Cyprinidae)' de sindirim sistemi ve yüzme kesesi gelişiminin histolojik olarak incelenmesi

Öz:
The histological development of the digestive system and swim bladder of Chalcalburnus tarichi larvae and their histology in adults were studied under light microscopy. After hatching, the digestive tract is a simple undifferentiated tube. Exogenous feeding started on the 6th day. The yolk sac was absorbed completely on the 9th day. The goblet cells appeared first in the bucco-pharyngeal cavity and oesophagus on the 4th day, in the anterior on the 9th day and in the posterior intestine on the 5th day. The digestive tract was differentiated as the buccal cavity, pharynx, oesophagus post-eosophageal swelling and intestine on the 5th day. At the same time, taste buds and pharyngeal teeth also started to form. In the oesophagus, the circular muscle was observed on the 9th day and the longitudinal muscle in one-year-old fish. In the intestine, the circular muscle was observed on the 35th day and the longitudinal muscle in two-year-old individuals. The wall of the digestive tract is composed of epithelial, submucosa, muscle and serosa layers. The liver lobules formed on the 3rd day and the cells began to reserve glycogen on the 10th day. The pancreatic acina formed on the 5th day and the tubular in one-year-old fish. The liver and pancreas ducts opened into the anterior intestine before the exogenous feeding started. The swim bladder was observed as one lobuled on the 4.5th day and two lobuled on the 35th day.
Anahtar Kelime: pankreas karaciğer balık yemek borusu Chalcalburnus tarichi bağırsaklar larva doku bilimi Cyprinidae yüzme kesesi sindirim sistemi Cypriniformes morfoloji biyolojik gelişim sucul hayvanlar organ oluşumu

Konular: Biyoloji
Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • 1. Braber, L., and de Groot, S.J., On the morphology of the alimentary tract of flatfishes (Pleuronectiformes): J. Fish Biol., 5: 147-153, 1973.
  • 2. Sis, R.F., Ives, P.J., Jones, D.M., Lewis, D.H., and Hensly, W, E., The microscopic anatomy of the oesophagus, stomach and intestine of the channel catfish, Ictalurus punctatus. J. Fish Biol., 14: 179-186, 1979.
  • 3. Clarke A.J. and Witcomb D.M., A study of the histology of the digestive tract of the common eel (Anguilla anguilla). J. Fish Biol. 16:159-170, 1980.
  • 4. Ezeasor, D.N., and Stokoe, W.M., Light and electron microscopic studies on the absorptive cells of the intestine, caeca and rectum of the adult rainbow trout, Salmo gairdneri, Rich. J. Fish Biol., 18: 527-544, 1981.
  • 5. Hirji, K.N., Observation on the histology and histochemistry of the oesophagus of the perch, Perca fluviatilis L., J. Fish Biol., 22: 145- 152, 1983.
  • 6. Rombout, J.H.W.M., Stroband, H.W.J. and Taverne-Thiele, J.J., Proliferation and differentiation of intestinal epithelial cells during development of Barbus conchonius (Teleostei, Cyprinidae): Cell Tissue Res., 236:207-216, 1983.
  • 7. Elbal, M.T. and Agulleiro, B., A histochemical and ultrastructural study of the gut of Sparus auratus (Teleostei): J. Submicrosc. Cytol., 18 (2): 335-347, 1986.
  • 8. Cataldi. E., Cataudella, S., Monaco, G., Rossi, A. and Tancioni, L., A study of the histology and morphology of the digestive tract of the sea-bream, Sparus aurata, J. Fish Biol., 30: 135-145, 1987.
  • 9. Ferraris, R.P., Tan, J.D. and De La Cruz, M.C., Development of the digestive tract of milkfish, Chanos chanos (Forsskal): Histology and Histochemistry. Aquaculture, 61: 241-257, 1987. (Elsevier Science Publishers B.V., Amsterdam, the Netherlands).
  • 10. Loewe, H. and Eckmann, R., The ontogeny of the alimentary tract of coregonid larvae: normal development. J. Fish Biol., 33: 841- 850, 1988.
  • 11. William, J.A. and Nichol, B.B., Histological structure of the intestine and pyloric caeca of the green sunfish, Lepomis cyanellus Rafinesque: J. Fish Biol., 35: 359-372, 1989.
  • 12. Diler, A., Timur, M., Çipura balığı (Sparus aurata L. 1758) Sindirim sisteminin anatomik ve histolojik yapısı: Doğa- Tr. J. of Veterinary and Animal Sciences, 16: 579-590. TÜBİTAK, 1992.
  • 13. Şimşek, S., Sarıeyyüpoğlu, M., Gökkuşağı alabalığı (Oncorhynchus mykiss, W.)'nda sindirim kanalının histolojik olarak incelenmesi: F.Ü. Fen ve Müh. Bilimleri Dergisi, 8 (1): 131-146, 1996.
  • 14. Murray H.M., Wright G.M. and Goff, G.P., A comparative histological and histochemical study of the post-gastric alimentary canal from three species of pleuronectid, the Atlantic halibut, the yellowtail flounder and the winter flounder: J. Fish Biol., 48, No. 2: 187-206, 1996.
  • 15. Çetinkaya O. and Elp M., İnci kefalinin (Chalcalburnus tarichi Pallas, 1811) morfolojik anatomisi ve sistematik özellikleri. Doğu Anadolu 1. ve 2. Su Ürünleri Sempozyumu Tebliğleri, 713-722, 1996, Erzurum.
  • 16. Kierman, J.A., Histological and histochemical methods: Theory and practice 2nd ed. Pergamon press Oxford, New York, p. 443, 1989.
  • 17. Balon, E.K., Terminology of intervals in fish development J. Fish. Res. Board Can. 32: 1663-1670, 1975.
  • 18. Boulhic, M. and Gabaudan, J., Histological study of the organogenesis of the digestive system and swim bladder of the dover sole, Solea solea (Linnaeus 1758). Aquaculture, 102: 373- 396, 1992 (Elsevier Science Publishers B.V., Amsterdam).
  • 19. Baglole, C.J., Murray, H.M., Goff, G.P. and Wright, G.M., Ontogeny of the digestive tract during larval development of yellowtail flounder: a light microscopic and mucous histochemical study. J. Fish Biol., Vol. 51, No. 1: 120-134, 1997.
  • 20. Crawford S.S. and Balon E.K., Alternative life histories of the genus Lucania: 1. Early ontogeny of L. parva, the rainwater killifish: Env. Biol. Fish., 40: 349-389, 1994.
  • 21. Balon, E.K., Alternative ways to become a juvenile or a definitive phenotype (and on some persisting linguistic offenses), Env. Bio. Fish., 56: 17-38, 1999.
  • 22. Ünal, G., Çetinkaya, O. and Elp M., The embryonic and larval development of Chalcalburnus tarichi (Cyprinidae): An endemic fish species of the lake Van basin, Turkey. Bulletion of pure and Applied Sciences. Vol. 19A (No. 1) 2000; p. 27-41.
  • 23. Takashima, F. and Hibiya, T., An atlas fish histology, Second edition, Gustav Fischer Verlag, New York, 195,1995.
  • 24. Martin, T.J. and Blaber, S.J.M., Morphology and histology of the alimentary tract of Ambassidae (Cuvier) (Teleostei) in Relation to Feeding: J. of Morphology, 182: 295-305, 1984.
  • 25. Bucke D., The anatomy and histology of the alimentary tract of the carnivorous fish the pike Esox lucius L., J. Fish Biol., 3: 421- 431,1971.
APA ÜNAL G, ÇETİNKAYA O, KANKAYA E, ELP M (2001). Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). , 217 - 228.
Chicago ÜNAL Güler,ÇETİNKAYA Osman,KANKAYA ERTUĞRUL,ELP Mahmut Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). (2001): 217 - 228.
MLA ÜNAL Güler,ÇETİNKAYA Osman,KANKAYA ERTUĞRUL,ELP Mahmut Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). , 2001, ss.217 - 228.
AMA ÜNAL G,ÇETİNKAYA O,KANKAYA E,ELP M Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). . 2001; 217 - 228.
Vancouver ÜNAL G,ÇETİNKAYA O,KANKAYA E,ELP M Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). . 2001; 217 - 228.
IEEE ÜNAL G,ÇETİNKAYA O,KANKAYA E,ELP M "Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae)." , ss.217 - 228, 2001.
ISNAD ÜNAL, Güler vd. "Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae)". (2001), 217-228.
APA ÜNAL G, ÇETİNKAYA O, KANKAYA E, ELP M (2001). Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). Turkish Journal of Zoology, 25(3), 217 - 228.
Chicago ÜNAL Güler,ÇETİNKAYA Osman,KANKAYA ERTUĞRUL,ELP Mahmut Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). Turkish Journal of Zoology 25, no.3 (2001): 217 - 228.
MLA ÜNAL Güler,ÇETİNKAYA Osman,KANKAYA ERTUĞRUL,ELP Mahmut Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). Turkish Journal of Zoology, vol.25, no.3, 2001, ss.217 - 228.
AMA ÜNAL G,ÇETİNKAYA O,KANKAYA E,ELP M Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). Turkish Journal of Zoology. 2001; 25(3): 217 - 228.
Vancouver ÜNAL G,ÇETİNKAYA O,KANKAYA E,ELP M Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae). Turkish Journal of Zoology. 2001; 25(3): 217 - 228.
IEEE ÜNAL G,ÇETİNKAYA O,KANKAYA E,ELP M "Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae)." Turkish Journal of Zoology, 25, ss.217 - 228, 2001.
ISNAD ÜNAL, Güler vd. "Histological study of the organogenesis of the digestive system and swim bladder of the Chalcalburnus tarichi pallas, 1811 (Cyprinidae)". Turkish Journal of Zoology 25/3 (2001), 217-228.