Yıl: 2019 Cilt: 4 Sayı: 1 Sayfa Aralığı: 22 - 26 Metin Dili: Türkçe İndeks Tarihi: 26-01-2021

Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi

Öz:
Kurşun (Pb) derişimlerinin etkisinde Oreochromis niloticus solungaç dokusunda Na+, K+, Ca++ ve Mg++ iyon düzeyleri 10, 20 ve30 gün sürelerde incelenmiştir. O. niloticus’lar 0.1, 0.5 ve 1.0 mg /L- Pb derişimlerinin etkisinde 10, 20 ve 30 günlük sürelerle solungaçdokularındaki iyon derişimleri (Na+, K+, Ca++ ve Mg++) Atomik Absorbsiyon Spektrofotometrik yöntemle saptanmıştır. Solungaç dokusu iyon(Na+, K+, Ca++ ve Mg++) düzeyleri kurşundan etkilenmiştir. Kurşun ortam derişimleri solungaç dokusu Na+, Ca++ ve Mg++ iyon düzeylerinde birartışa neden olurken, K+ iyon düzeylerinde bir azalmaya neden olmuştur. Bu çalışmada iyon düzeylerinin kurşundan etkilenmesi nedeniyle O.niloticus’un metal kirliliğine karşı hassas bir organizma olduğu saptanmıştır.
Anahtar Kelime:

The Effect of Lead on Ion Levels of Oreochromis niloticus Gill Tissue

Öz:
Na+, K+, Ca++ and Mg++ ion levels in Oreochromis niloticus gill tissues under influence of lead (Pb) concentrations were investigated for 10, 20 and 30 days. Ion concentrations of O. niloticus gill tissues were determined by Atomic Absorption Spectrophotometric method for 10, 20 and 30 days in concentrations of 0.1, 05 and 1.0 mg LPb. Gill ion (Na+, K+, Ca++ and Mg++) levels were affected by Pb. Lead concentrations caused an increase in Na+, Ca++ and Mg++ ion levels, but caused a decreased in K+ ion levels. In this study, O. niloticus was found to be an organism sensitive to metal contamination due to Pb influences of ion levels.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Astorga-Espana, M.S., Pena-Mendez, E.M. & Montelongo, F.J. (1999). Application of principal component analysis to the study of major cations and trace metals in fish from Tenefire (Canary Islands). Chem and İntell Lab, 49, 173-178.
  • Berman, E. (1980). Copper in “Toxic Metals and Their Analysis”. Chapter 12, 88-100., HeydenSon LTD, London.
  • Bjerregaard, P. & Vislie, T. (1985). Effect of Mercury on ion and osmoregulation in the shore crab Carcinus maenas (L.). Comp Biochem Physiol, 82C,(1), 227- 230.
  • Burden, V.M., Sandheinrich, M.B. & Caldwell, C.A. (1998). Effects of Lead on the Growth and - aminolevulinic Acid Dehydratase Activity of Juvenile Rainbow Trout, Oncorhynchus mykiss. Environmental Pollution, 101, 285-289.
  • Campana, O., Sarasquete, C. & Blasco, J. (2003). Effect of lead on ALA-D activity, metallothionein levels, and lipid peroxidation in blood, kidney, and liver of the toadfish Halobatrachus didactylus. Ecotoxicology and Environmental Safety, 55, 116-125.
  • Croke, S.J. & Mcdonald, D.G. (2002). the further development of ıonoregulatory measures as biomarkers of sensitivity and effect in fish species. Environ Toxicol Chemist, 21, 8, 1683-1691.
  • Evans, D.H. (1993). Osmotic and ionic regulation. In Evans, D. H. (Ed.), The Physiology of Fishes. CRC Press, Boca Raton, FL, 315-341.
  • Felts, P.A. & Heath, A.G. (1984). Interaction of temperature and sublethal environmental copper exposure on the energy metabolism of bluegill, Lepomis macrochirus Rafinesque. J Fish Biol, 25, 445-453.
  • Hawkins, A.D. (1981). Aquarium systems, Academic Press. London. 452 pp.
  • Heath, A.G. (1987). Water pollution and fish physiology. CRC Press. 24 pp. Florida USA.
  • Hilmy, A.M., El Domıaty, N.A., Daabees, A.Y. & Alsarha, A. (1987). The toxicity to Clarias lazera of copper and zinc applied jointly. Comp Biochem Physiol, 87C(2), 309-314.
  • Hongstrand, C., Ferguson, E.A., Galves, F., Shaw, J.R., Webb, N.A. & Wood, C.M. (1999). Physiology of acute silver toxicity in the starry flounder (Platichtys stellatus) in Seawater. J Comp Physiol B, 169, 461- 473.
  • Hutchinson, N.J. & Sprague, J.B. (1989). Lethality of trace metal mixtures to americans flagfish in neutralized acid water. Arch Environ Contam Toxicol, 18, 249- 254.
  • Lauren, D.J. & Mc Donald, D.G. (1986). Influence of water hardness, ph and alkalinity on the mechanisms of copper toxicity in juvenile rainbow trout, Salmo gairdneri. Can J Fish Aquat Sc, 43, 1488-1496.
  • Muramoto, S. (1983). Elimination of copper from cucontaminated fish by long-term exposure to EDTA and fresh-water. J Environ Sci Health A, 18(3), 455- 461.
  • Murphy, C.B.Jr. & Spiegel, S.J. (1983). Bioaccumulation and toxicity of heavy metals and related trace elements, Water Pollution, 55(6), 816-821.
  • Nemcsok, J.G. & Hughes, G.M. (1988). The effect of copper sulphate on some biochemical parameters of Rainbow trout. Environmental Pollution, 49, 77-85.
  • Morgan, J.D., Sakamoto, T., Grau, E.G. & Iwama, G.K. (1997). Physiological and respiratory responses of the Mozambique tilapia (Oreochromis mossambicus) to salinity acclimation. Comparative Biochemistry and Physiology Part A: Physiology, 117(3), 391-398.
  • Nussey, G., Van Vuren, J.H.J. & Du Preez, H.H. (1995). Effect of copper on the haematology and osmoregulation of the Mozambique tilapia, Oreochromis mossambicus (Cichlidae). Comp Biochem Physiol, 111C, 369-380.
  • Pelgrom, S.M.G.J., Lock, R.A.C., Balm, P.H.M. & Wendelaar Bonga, S.E. (1995). Effects of combined waterborne Cd and Cu Exposures on ıonic composition and plasma cortisol in Tilapia, Oreochromis mossambicus. Comp Biochem and Physiol Part C: Toxicol & Endocrin, 111(2), 227- 235.
  • Playle, R.C. (1998). Modelling metal ınteractions at fish gills. The Science of the Total Environment, 219, 147-163.
  • Rohlf, J.F. & Sokal, R.R. (1969). Statistical tables. W. H. Fremon and Company, San Francisco. 253pp.
  • Roger, J.T., Richards, J.G. & Wood, C.M. (2003). Ionoregulatory disruption as the toxic mechanism for lead in the Rainbow Trout (Oncorhynchus mykiss). Aquatic Toxicology, 64(2), 215-234.
  • Ruparelia, S.G., Verma, Y., Mehta, N.S. & Salyed, S.R. (1989). Lead-ınduced biochemical changes in Freshwater fish Oreochromis mossambicus. Bull Environ Contam Toxicol, 43, 310-314.
  • Sloman, K.A., Morgan, T.P., McDonald, D.G. & Wood, C.M. (2003). Socially-induced changes in sodium regulation affect the uptake of water-borne copper and silver in the rainbow trout, Oncorhynchus mykiss. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 135(4), 393- 403.
  • Sokal, R.R. & Rohlf, J.F. (1969). “Biometry” W.H. And Freeman and Company, San Francisco. 776pp.
  • Spry, D.J. & Wood, C.M. (1984). Acid-base, plasma ıon and gas changes in Rainbow Trout during short term toxic zinc exposure, J Comp Physiol B, 154, 149- 158.
  • Suresh, A., Sivaramakrishna, B. & Radhakrishnaiah, K. (1995). Cadmium ınduced changes in ıon levels and atpase activities in the muscle of the fry and fingerlings of the Freshwater fish, Cyprinus carpio. Chemosphere, 30(2), 365-375.
  • Thaker, J., Chhaya, J., Nuzhat, S., Mittal, R., Mansuri, A.P. & Kundu, R. (1996). Effects of chromium (VI) on some ion-dependent ATPases in gills, kidney and ıntestine of a coastal teleost Periophtalmus dipes. Toxicology, 112, 237-244.
  • Verbost, P.M., Flik, G., Lock, R.A.C. & Wendelaar Bonga, S.E. (1987). Cadmium ınhibition of Ca2+ uptake in Rainbow trout gills. Am J Physiol, 253, 216-221.
  • Verbost, P.M., Flik, G., Lock, R.A.C. & Wendelaar Bonga, S.E. (1989). The movement of cadmium through freshwater trout branchial epithelium and ıts ınterference with calcium transport. J Exp Biol, 145, 185-197.
  • Verep, B., Mutlu, T., Yüksek, T. & Gürdal, A.A. (2018). Sert ve yumuşak su koşullarında Karadeniz alabalığı (Salmo coruhensis) dokularında ağır metal (Civa: Hg) birikiminin belirlenmesi, Anadolu Çevre ve Hayvancılık Bilimleri Dergisi, 3(1), 19-26.
  • Viarengo, A. (1985). Biochemical effects of trace metals. Marine Pollution Bull, 16(4), 153-158.
  • Wood, C.M. (1988). Acid-base and ıonic exchanges at gills and kidney after exhaustive exercises in the Rainbow trout. J Exp Biol, 136, 461-481.
  • Wood, C.M. (1992). Flux measurements as indices of H+ and metal effects on freshwater fish. Aquatic Toxicology, 22, 239-264.
APA cogun h, KARGIN F (2019). Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. , 22 - 26.
Chicago cogun hikmet,KARGIN FERIT Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. (2019): 22 - 26.
MLA cogun hikmet,KARGIN FERIT Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. , 2019, ss.22 - 26.
AMA cogun h,KARGIN F Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. . 2019; 22 - 26.
Vancouver cogun h,KARGIN F Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. . 2019; 22 - 26.
IEEE cogun h,KARGIN F "Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi." , ss.22 - 26, 2019.
ISNAD cogun, hikmet - KARGIN, FERIT. "Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi". (2019), 22-26.
APA cogun h, KARGIN F (2019). Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. JOURNAL OF ANATOLIAN ENVIRONMENTAL AND ANIMAL SCIENCES, 4(1), 22 - 26.
Chicago cogun hikmet,KARGIN FERIT Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. JOURNAL OF ANATOLIAN ENVIRONMENTAL AND ANIMAL SCIENCES 4, no.1 (2019): 22 - 26.
MLA cogun hikmet,KARGIN FERIT Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. JOURNAL OF ANATOLIAN ENVIRONMENTAL AND ANIMAL SCIENCES, vol.4, no.1, 2019, ss.22 - 26.
AMA cogun h,KARGIN F Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. JOURNAL OF ANATOLIAN ENVIRONMENTAL AND ANIMAL SCIENCES. 2019; 4(1): 22 - 26.
Vancouver cogun h,KARGIN F Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi. JOURNAL OF ANATOLIAN ENVIRONMENTAL AND ANIMAL SCIENCES. 2019; 4(1): 22 - 26.
IEEE cogun h,KARGIN F "Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi." JOURNAL OF ANATOLIAN ENVIRONMENTAL AND ANIMAL SCIENCES, 4, ss.22 - 26, 2019.
ISNAD cogun, hikmet - KARGIN, FERIT. "Oreochromis niloticus’un Solungaç Dokusu İyon Düzeyleri Üzerine Kurşunun Etkisi". JOURNAL OF ANATOLIAN ENVIRONMENTAL AND ANIMAL SCIENCES 4/1 (2019), 22-26.