PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2015 | 45 |

Tytuł artykułu

Haematological and blood biochemical changes in the fresh water fish, Notopterus notopterus (pallas) exposed to acidic medium

Autorzy

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The present study was carried out to find out the changes induced by one of the stress conditions such as acidic medium exposure on some haematological and blood biochemical, parameters in the fresh water fish, Notopterus notopterus. Increase in the haemoglobin and haematocrite indicate haemoconcentration in the fish blood. Glucose, alkaline phosphatase, sodium and calcium, protein, BUN, creatinine, triglycerides, enzymes such as SGOT and SGPT were decreased in the fish N.notopterus exposed to acidic condition. The changes in the environmental factors such as acidic condition cause stress to the fish which may bring disturbance in the blood parameters effecting the survival of fish.

Wydawca

-

Rocznik

Tom

45

Opis fizyczny

p.27-33,ref.

Twórcy

autor
  • Department of Studies in Zoology Gulbarga University, Gulbarga-585106, India
autor
  • Department of Studies in Zoology Gulbarga University, Gulbarga-585106, India

Bibliografia

  • [1] Abdelmeguid, N., Kheirallah, A. M., Abou-Shaban, Adham, K and Abdel-Moneim, A. (2002). Histolochemical and biochemical changes in liver of Tilapia zilli, as a consequence of water pollution. J. Biol. Sci., 2: 224-229.
  • [2] Acharya, K., Jack, J.D. and Bukaveckas, P.A. (2005). Dietary effects on life history traits of riverine Bosmina. Freshwater Biol., 50: 965–975.
  • [3] Baker, F. J. and Silverton, R.E. (1976). The theory of staining. Introduction to Medical Laboratory Technology 6th ed. Butterworths, pp. 385 –391.
  • [4] Castellini, M.A. and Rea, L.D. (1992). The biochemistry of natural fasting at its limits.Experientia., 48: 575-582.
  • [5] Dheer, J.M.S., Dheer, T.R. and Mahajan, C.L. (1987). Haematological and haematopoietic response to acid stress in an air-breathing freshwater fish, Channa punctatus Bloch. J. Fish Biol., 30 (5): 577-588.
  • [6] Donaldson, E.M. (1981). The Pituitary Interregnal Axis as an Indicator of Stress in Fish In: Pickering, A.D. (Ed.) Stress in fish. Academic Press, London, pp: 11-47.
  • [7] Dugan, S.G. and Moon, T.W. (1998). Cortisol does not affect hepatic α- and β-adrenoceptor properties in rainbow trout (Oncorhynchus mykiss). Fish Physiol. Biochem., 18: 343–352.
  • [8] FAO, (1998). Aquaculture production statistics 1987-1996. Fish Cir. 815 FAO: Rome. P. 96.
  • [9] Kaplan, A., Ozabo, L.L., and Ophem, K.E. (1988). Clinical Chemistry: Interpretation and Techniques. 3rd edn. Lea & Febiger, Philadelphia.
  • [10] Kossakowski Korwin, M. (1988). Larval development of carp, Cyprinus carpio in acidic water. J. Fish. Biol., 32: 17-26.
  • [11] Kroglund, F., and Finstad, B. (2003). Low concentrations of inorganic monomeric aluminum impair physiological status and marine survival of Atlantic salmon. Aquaculture, 222: 119- 133.
  • [12] Lawrence, M. S. (1986). Amino acids and Proteins. In: Textbook of Clinical Chemistry. Tiezt, N W (editor) W B Sounders Company, US p. 519-618.
  • [13] Lee, R.M., Gerking, S.D. and Jezierska, B. (1983). Electrolyte balance and energy mobilization in acidstressed rainbow trout (Salmo gairdneri) and their relation to reproductive success. Environment and Biology of Fishes, 8: 115-123.
  • [14] McWilliams, P. G. and Potts, W. T. W. (1978). The effects of pH and calcium concentrations on gill potentials in the brown trout, Salmo trutta. J. comp. Physiol., 12: 277—286
  • [15] Milligan, C.L. and Wood, C.M. (1982). Disturbances in hematology, fluid volume distribution and circulatory function associated with low environmental pH in the rainbow trout (Salmo gairdneri). J. Exp. Biol., 99: 397-415.
  • [16] Murray, R.K., Granne, D.K., Mayes, P.A. and Rodwell, V.W. (1990). Harper’s Biochemistry. 23rd ed., Appleton and Large publishers, Norwalk, Connecticut/ Los Altos, California. [17] Percin, F., Sibel, K., Kursat, F and Sahin, S. (2010). Serum electrolytes of wild and captive Bluefin Tuna (Thunnus thynnus L.) in Turkish Seas J. Anim. Vet. Adv. 9(16): 2207-2213.
  • [18] Poleo, A. and Hytterod, S. (2003).The effect of aluminium in Atlantic salmon with special emphasis on alkaline water. Journal of Inorganic Biochemistry, 97: 89–96.
  • [19] Ramesh, M., Srinivasan, R. and Saravanan, M. (2009). Effect of atrazine (herbicide) on blood parameters of common carp Cyprinus carpio (Actinopterygii: Cypriniformes). Afr. J. Environ. Sci. Technol., 3(12): 453-458.
  • [20] Royset, O., Rosseland, B.O., Kristensen, T., Kroglund, F., Garmo, O.A. and Steinnes, E. (2005). Diffusive gradients in thin films sampler predicts stress in brown trout Salmo trutta L. exposed to aluminum in acid fresh waters. Environ Sci Technol., 15(4), 1167-1174.
  • [21] Shalaby, A.M., Khattab, Y.A. and Abdel-Rahman, A.M. (2006). Effects of garlic Allium sativum and chloramphinicol on growth performance, physiological parameters and survival of Nile tilapia Oreochromis niloticus. J. Venom. Anim. Toxins incl. Trop. Dis., 12(2), 172-201.
  • [22] Soivio, A. and Nikinmaa, M. (1981). The swelling of erythrocytes in relation to the oxygen affinity of the blood of the rainbow trout Salmo gairdneri Richardson. In: Stress and fish. (ed. A.D. Pickering), pp. 103-119. Academic Press, London.
  • [23] Spiff, A. I. and M. N. Horsefall. (1998). Principles of environmental chemistry. Metroprints Ltd. Port Harcourt. 82 p.
  • [24] Spry, D. J., Wood C. M. and. Hodson. P. V (1981). The effects of environmental acid on freshwater fish with particular reference to the soft water lakes in Ontario and the modifying effects of heavy metals. A literature review. Can. Tech. Rep. Fish. Aquat. Sci., 999: 144 pp.
  • [25] Vijayan, M.M., Pereira, C., Grau, E.G., and Iwama, G.K. (1997). Metabolic responses to confinement stress in tilapia: the role of cortisol. Comp. Biochem. Physiol., C, 116, 89-95.
  • [26] Wells, R. M G., R. H. Mc Intyre, A. K. Morgan, and P. S. Davie. (1986). Physiological stress responses in big gamefish after capture: observations on plasma chemistry and blood factors. Comp. Biochem. Physiol., 84:565–571.
  • [27] Wurst, W.A. and R.R. Stickney, (1989). Responses of red drum (Sciaenopso cellatus) to calcium and magnesium concentrations in fresh and salt water. Aquaculture, 76: 21-35.

Typ dokumentu

Bibliografia

Identyfikator YADDA

bwmeta1.element.agro-ef0ad7e8-3f22-4df1-8161-cd6a685adebc
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.