Impact of heavy metal, cadmium (II) on glycogen content of the freshwater bivalve, Lamellidens marginalis in monsoon season
Keywords:
Cadmium, different body parts glycogen Lamellidens marginalisAbstract
Aquatic environment gets polluted by heavy metals because of their environmental persistence and ability to bioaccumulate in aquatic organisms. Cadmium is a ubiquitous toxic heavy metal, biologically non-essential element, it is not biodegradable and has a very long biological half-life. The aim of the present study was to assess the glycogen content in different body parts i.e. Mantle, gill, gonad, hepatopancreas, siphon, foot, anterior adductor muscle and posterior adductor muscle of freshwater bivalvemolluscs Lamellidens marginalis exposed to lethal concentrations of cadmium chloride after 96 hrs acute toxicity of exposure. The results clearly showed In LC0 group compared with control group the content significantly increased from gill (67.62% P<0.01) followed by hepatopancreas (51.89% P<0.01) and gonad (21.14% P<0.01) and Decreased significantly from siphon (47.87% P<0.01), Anterior adductor muscle (42.73% P<0.01), posterior adductor muscle (40.33% P<0.01), mantle (4.24% P<0.01) and foot (3.28% P<0.01).In LC50 group compared with control content showed increase significantly from mantle (41.08% P<0.01) and Decreased significantly from foot (63.27% P<0.01), siphon (46.89% P<0.01), gonad (45.45% P<0.01),hepatopancreas (29.70% P<0.01), gill (21.75% P<0.05) anterior adductor muscle (17.65%) and Posterior adductor muscle (7.40% P<0.01) showed non significant. The influence of toxicant cadmium chloride in selected tissues of freshwater bivalve mollusks Lamellidens marginalis was taken into account in evaluating to response against stressor. Hence, we can use glycogen content as biomarker of cadmium stress in bivalve mollusks
References
Alkhail, A. R., A. I. Askar, L. K. Younis, K. S. El Gendy and M. M. Abbas. (2004): Risk assessement of tributyltin oxide in an aquatic environment: A toxicity and sublethal effect on brain AChE and gill ATPases actvivty of Tilapia fish, Oreochromis niloticus. Pak. J. Biol. Sci. 7:1117-1120
Cebrian, E., Marti, R., Uriz, M. J., Turon, X. (2003): Sublethal effect of contamination on the Mediterranian sponge Crambe Crambe: Metal accumulation and biochemical responses. Mar. Pollut. Bull. 46: 1273- 1284
Shete, P.S., Patwari, J. M and Shembekar, V.S. (2011): Impact of CuSO4 on the oxygen consumption of fresh water fish, L. rohita. Deccan Current Science. 5: 299-302
Hawkes, S. J. (1997): What is a heavy metal? Jour. Chem. Edu. 74:1374, Joshi, P.K., M. Bose and D. Harish. (2002): Haematological changes in the blood of Clarias batrachus exposed to mercuric chloride . Ecotoxicol Environ Monit. 12:119-122
Singh, J.P., Verma, N. and Mishra, T.P. (2006): Physio-chemical characeristics of Darban lake (Ambedkar Nagar, U.P): Temperature and alkalinity. J. Adv. Zool., 27(2): 98-100
Arellano, J.M., J, Blasco, J B Ortiz, D Capita-Da Silva, Anavarro, M J Sanchez-Del Pino, and C. Saraasquete, (2000): Accumulation and histopathological effects of Copper in the gills and liver of Senegales Sole, Solea senegalensis and Toad fish, Halobatrachua didactylus. Ecotoxicol Environ Restor 3(1):22-28
Abou El-Naga, E.H., El - Moselhy, Kh.M and Mohamadein, L.I, 2001: Effect of Cadmium and Copper on the digestive gland enzymes of the Limpet Patella Sp. Mollusca, Gastropada. J. Egypt. Academy Society Environ Devpt 2(1): 29-36
Rao, J.V., C.H.S.Rani., P. Kavitha, R.N. Rao and S.S. Mhavandra, (2003): Toxicity of Chroropyrifos to fish, Oreochromis Mossambicus. Bull. Environ Contam Toxiol. 70: 985-992
Manson, C F. (1996): Biology of fresh water pollution. III Edition. Longman, U.K.1-4
Bhattacharyya, M H., A K Wilson, S S Rajan, and M Jonah, (2000): Biochemical pathways in Cadmium toxicity: Molecular Biology and Toxicology of Metals (RK Zalups and J Koropatnick, Eds.) 34-74, Taylor and Francis, London.
Emad H. Abou El Naga, Khalid M. El Moselhy and Mohammed A Hameed. (2005): Toxicity of Cadmium and Copper and their effect on some biochemical parameters of marine fish, Mugil seheli. Egypt. J Aquatic Research. 31(2):60-71
Agrahari, S and Gopal K. (2007): Fate and toxicity of Cadmium and lead accumulation in different tissues (gills, liver, kidney, brain) of fresh water fish, Channa punctatus. J. Ecophysiol. Occup Hlth. 7: 151-155
Patil, S.S and Mane, U.H., (2004): Tissue biochemical level in different body parts of Bivalve, Lamellidens marginalis, exposed to mercury in Monsoon season. Ind. J. Comp. Anim. Physiol. Vol. 22: 56-61
Joshi PK, Bose M, Harish D (2002). Haematological changes in the blood of Clariasbatrachus exposed to mercuric chloride. Eco toxicological Environmental Monitoring 12(2):119-122
Kharat, P.S. Laxmi. B. Ghoble, K.B. Shejule, R.S. Kale and B.C. Ghoble, (2009): Impact of TBTCl on the total protein content in the fresh water prawn, Macrobrachum kistensis, Middle- East. J. Scientific. Research 4(3): 180-184
Virk, S and Sharma, A, (2003): Alterations in the biochemical constituents of muscles of Cirrhinus mrigala following exposure to and withdrawal of metals. Bull. Environ. Contam. Toxicol. 70: 106-111
Mali, R.P. 2003: Heavy metal induced changes in the glycolytic potential of fresh water female Crab, Barytelphusa guerini. J. Comp. Toxcol. Physiol. 1(II):115-117
Abbas HHH and Mahmoud HM, (2004): Haematological and biochemical changes in Oreochromis aureus and Clarias gariepinus exposed to mixture of Copper and lead salts. Egypt. J. Applied. Physiol. 3: 89-106
Boeck De, G., Smolders, R. and Blust, R. (2010): Copper toxicity in gibel carp, Carassius auratus: Importance of sodium and glycogen. Comp. Biochem. Physio.C.Toxicol.Pharmacol.152 (3): 332-337.
Dezwann, B. and D.I. Zandee (1972): The utilization of glycogen and accumulation of some intermediates comp. Biochem. Physiol., 43 B: 47-54.
Sole, M., Morcillo, Y and Porte, C, (2000): Stressprotein response in TBT exposed clams. J of Bulletin Environ Contam And Toxicol. Vol. 64:852-858
Kale, M. K. (2002): Cadmium toxicity to some physiological activities of fresh water fish and Crab: A Comparative study. Ph.D thesis, Dr. B. A. M. University, Aurangabad.
Khan, A.K., Shaikh, A.M., and Ansari, N.T. (2001): CdCl2 toxicity in glycogen levels from body parts and whole body of marine edible gastropod, Barbylonia spirata. Uttar pradesh J. of Zool. 21(3): 203-206
Dhanaqpakian, P and V. K. Ramaswamy (2001): Toxic effect of Copper and Zinc mixtures on some haematological and biochemical parameters in common carp, Cyprinus carpio (Linn.). J. Environ. Biol. 22(2): 105-111
Ramalingam, K and Indra. (2002): CuSO4 toxicity in tissue phosphates and carbohydrate turnover in Achatina fulcia. J. Environ. Biol. 23(2): 181-188
Gluszak L., Miron Dios S., Mores B., Simoes R., Schetinger M., Morch V. and Loro V. (2007): Acute effect of glyphosate herbicide on metabolic and enzymatic parameters of Silver Catfish, Rhambia quelen. Comp Biochem Physiol C Toxicol Pharmacol., 146: 519-524.
Venkataramana, G.V., Sandhya Rani, N and Murhty, P.S. (2006): Impact of malathion on the biochemical parameteres of gobiid fish, Glossogobius giuris (Ham.). J. Enviro. Biol. 27(1): 119-122
Martin Deva prasath and Arivoli, S. (2008): Biochemical study of fresh water fish, Catla catla with reference to mercuric chloride. Iran. J. of Environ. Health Sci Engg. 5(2): 109 - 116
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