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Seasonal Variation of Heavy Metals in the Intertidal Gastropod Trochus radiatus of Gulf of Mannar

DOI: 10.4236/ojms.2021.112007, PP. 92-102

Keywords: Heavy Metal, Trochus radiatus, Accumulation, Sediment, Tissue

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Abstract:

Heavy metals are considered to be the most common environmental pollutants in waters and biota; that indicate presence of effluents associated with industrial and domestic sources. The present study aimed to evaluate the trace metal accumulation (Fe, Mn, Zn, Cu, Cd, Pd and Ni) in the tissue of radiate top shell, the sediment and water samples collected from the Hare Island, Tuticorin, during May 2015 to April 2016. During the study, the metal accumulation in the Water, Sediment and Tissue were in the order of Zn > Pb > Cu > Cd; Fe > Mn > Zn > Cu > Cd; Fe > Zn > Mn > Cu > Cd > Pb > Ni respectively. The concentration of Fe dominated in the sediment and tissue sample throughout the study period. Elevated levels of trace metals especially Fe, Mn, Cu, Pb and Zn was observed during October to December, i.e., during the northeast monsoon in all the samples. One way ANOVA indicated statistically no significant difference (p > 0.01) in the variation of Fe, Mn and Ni within the samples.

References

[1]  Joint Group of Experts on the Scientific Aspects of Marine Pollution (GESAMP) (1982) The Review of the Health of Oceans. Journal Series Reports and Studies, 15, 108.
[2]  Ram Mohan, V., Jonathan, M.P. and Srinivasalu, S. (2010) Geochemistry of Lead and Zinc Accumulation in the Sediments of the Inner Shelf off Tuticorin, Gulf of Mannar, South India. National Seminar on Applied Chemistry in Marine Science 2010 of Indian society of Applied Geochemists (ISAG), Hyderabad, 24-25 February 2010.
[3]  Ozlem Selcuk, Z., Ceylan, H. and Dogru, M. (2009) Determination of Heavy Metals and Comparison to Gross Radioactivity Concentration in Soil and Sediment Samples of Bendimahi River Basin (Van, Turkey). Water, Air, and Soil Pollution, 196, 75-87.
https://doi.org/10.1007/s11270-008-9758-0
[4]  Ramanujam, N. and Antony Ravindran, A. (2010) A Study Hazardous Solid Waste and Leachate Plume—Ground Water Pollution through 2D Electrical Resistivity Imaging at Ambasamudram, Tamil Nadu, India. National Seminar on Applied Chemistry in Marine Science 2010 of Indian society of Applied Geochemists (ISAG), Hyderabad, 24-25 February 2010.
[5]  George, T. (1995) Comparative Studies on the Ecobiology of Mangrove Communities along the Backwater System of Kerala. Ph.D. Thesis, University of Kerala, Trivandrum.
[6]  Vinithkumar, N.V., Kumaresan, S., Manjusha, M. and Balasubramanian, T. (1999) Organic Matter, Nutrients and Major Ions in the Sediments of Corals Reefs and Seagrass Bed of Gulf of Mannar Biosphere Reserve, Southeast coast of India. Indian Journal of Marine Sciences, 28, 383-393.
[7]  Palanichamy, S. and Rajendran, A. (2000) Heavy Metal Concentrations in Sea Water and Sediments of Gulf of Mannar and Palk Bay, Southeast Coast of India. Indian Journal of Marine Sciences i, 29, 116-119.
[8]  Page, A.I., Chang, A.C. and El-Amamy, M. (1987) Cadmium Levels in Soils and Crops in United States. In: Hutchinson, T.C. and Meema, K.M., Eds., Lead, Mercury, Cadmium and Arsenic in the Environment (SCOPE 31), John Wiley and Sons, Hoboken, 119-148.
[9]  Hutton, M. (1987) Human Health Concerns of Lead, Mercury, Cadmium and Arsenic. In: Hutchinson, T.C. and Meema, K.M., Eds., Lead, Mercury, Cadmium and Arsenic in Environment (SCOPE 31), John Wiley and Sons, 53-68.
[10]  Girija, T.R., Mahanta, C. and Chandramouli, V. (2007) Water Quality Assessment of an Untreated Effluent Imparted Urban Stream: The Bharalu Tributary of the Brahmaputra River, India. Environmental Monitoring and Assessment, 130, 221-236.
https://doi.org/10.1007/s10661-006-9391-6
[11]  Ananthan, G., Ganesan, M., Sampath Kumar, P., Mathevan Pillai, M. and Kannan, L. (1992) Distribution of Trace Metals in Water, Sediment and Plankton of the Vellar Estuary. Seaweed Research and Utilization, 15, 69-75.
[12]  Karthikeyan, R., Vijayalakshmi, S. and Balasubramanian, T. (2004) Seasonal Distribution of Heavy Metals in the Sediments from Uppanar Estuary (East Coast of India). Journal of Aquatic Biology, 19, 119-122.
[13]  Karthikeyan, R., Vijayalakshmi, S. and Balasubramanian, T. (2007) Monthly Variations of Heavy Metals and Metal Resistant Bacteria from the Uppanar Estuary (South East Coast of India). Research Journal of Microbiology, 2, 50-57.
https://doi.org/10.3923/jm.2007.50.57
[14]  Young, M.L. (1975) The Transfer of 65Zn and 59FE along a Fucus serratus (L) Littorina obtusata (L) Food Chain. Journal of the Marine Biological Association of the United Kingdom, 55, 538-610.
https://doi.org/10.1017/S0025315400017276
[15]  Portmann, J.E. (1979) Chemical Monitoring of Residue Levels in Fish and Shellfish Landed in England and Wales during 1970-73. Aquatic Environment Monitoring, Report No. 1, Directorate of Fisheries Research, Lowestoft, 70.
[16]  Easterson, D.C.V. (1998). Impact of Marine Pollution on the Ecological Resources of Gulf of Mannar. Biodiversity of Gulf of Mannar Marine Biosphere Resource, M.S. Swaminathan Foundation of India, Chennai, 56-57.
[17]  Murugan, A. and Edward, J.K.P. (2000) Factors Threatening Biodiversity of Marine Mollusks in Tuticorin, Gulf of Mannar. Phuket Marine Biological Center Special Publication, 21, 159-162.
[18]  Ganesan, M. and Kannan, L. (1995) Iron and Manganese Concentrations in Sea Water, Sediment and Marine Algae of Tuticorin Coast, Southeast Coast of India. Indian Journal of Marine Sciences, 24, 236-237.
[19]  Baskaran, M., Ramadhas, V. and Santhanam, R. (2002) Metal Pollution in Tuticorin Coastal Waters Due to Fly Ash of Thermal Power Plant. National Seminar on Marine and Coastal Ecosystems: Coral and Mangrove-Problems and Management Strategies, Vol. 2, 190-193.
[20]  Satyanarayana, D. and Murty, P.V.S.P. (1990) Distribution of Dissolved Trace Metals in Western Bay of Bengal. Indian Journal of Marine Sciences, 19, 206-211.
[21]  Nicolaidou, A. and Nott, J.A. (1998) Metals in Sediment, Seagrass and Gastropods Near a Nickel Smelter in Greece: Possible Interactions. Marine Pollution Bulletin, 36, 360-365.
https://doi.org/10.1016/S0025-326X(97)00195-1
[22]  Stapel, J., Aarts, T.L., Duynhoven van, B.H.M.J., De Groot, D., Van den Hoogen P.H.W. and Hemminga. M.A. (1996) Nutrient Uptake by Leaves and Roots of the Sea Grass Thalassia hemprichii in the Spermonde Archipelago, Indonesia. Marine Ecology Progress Series, 134, 195-206.
https://doi.org/10.3354/meps134195
[23]  Senthilnathan, S., Balasubramanian, T. and Venugopalan, V.K. (1998) Metal Concentration in Mussel Perna viridis (Bivalvia/Anisomyaria) and Oyster Crassostrea madrasensis (Bivalvia/Anisomyaria) from Some Parts in Southeast Coast of India. Indian Journal of Marine Sciences, 27, 206-210.
[24]  Terlizzi, A., Fraschetti, S., Guidetti, P. and Boero, F. (2002). The Effects of Sewage Discharge on Shallow Hard Substrate Sessile Assemblages. Marine Pollution Bulletin, 44, 544-550.
https://doi.org/10.1016/S0025-326X(01)00282-X
[25]  Dalziel, J. and Baker, C. (1984) Analytical Methods for Measuring Metals by Atomic Absorption Spectrophotometry. FAO Fisheries & Aquaculture—Technical papers, 212, 14-20.
[26]  Anoop, A.K., Krishnakumar, P.K. and Rajagopalan, M. (2007) Trichodesmium erythraeum (Ehrenberg) Bloom along the Southwest Coast of India (Arabian Sea) and Its Impact on Trace Metal Concentrations in Seawater. Estuarine, Coastal and Shelf Science, 71, 641-646.
https://doi.org/10.1016/j.ecss.2006.09.012
[27]  Beldi, H., Gimbert, F., Maas, S., Scheifler, R. and Soltani, N. (2006) Seasonal Variations of Cd, Cu, Pb and Zn in the Edible Mollusc Donax trunculus (Mollusca, Bivalvia) from the Gulf of Annaba, Algeria. African Journal of Agricultural Research, 1, 85-90.
[28]  Ganesan, M., Kannan, R., Rajendran, K., Govindasamy, C., Sampathkumar, P. and Kannan, L. (1991) Trace Metals Distribution in Seaweeds of the Gulf of Mannar, Bay of Bengal. Marine Pollution Bulletin, 22, 205-207.
https://doi.org/10.1016/0025-326X(91)90472-5
[29]  Kaladharan, P., Prema, D., Valsala, K.K., Leelabai, K.S. and Rajagopalan, M. (2005) Trends in Heavy Metal Concentrations in Sediment, Fin Fishes and Shellfishes in Inshore Waters of Cochin, Southwest Coast of India. Journal of the Marine Biological Association of India, 47, 1-7.
[30]  Chandrasekar, N. (2001) Trace Elements in the Suspended Sediments of Salt Marsh Area of Karapad Creek, Tuticorin. Indian Journal of Environment and Ecoplanning, 5, 81-86.
[31]  Meetu, G., Kumar, A. and Yunus, M. (2000) Effect of Fly-Ash on Metal Composition and Physiological Responses in Leucaena leucocephala (Lamk) De. Wit. Environmental Monitoring and Assessment, 61, 399-406.
https://doi.org/10.1023/A:1006169716006
[32]  Sandhya, K. and Kulkarni, B.G. (2014) Accumulation of Heavy Metals in Intertidal Gastropod Shells Used as Bioindicator from Uran Coast (West Coast of India). The Journal of Scientific and Engineering Research, 5, 1542-1550.
[33]  Tsui, M.T.K. and Wang, W.V. (2004) Uptake and Elimination Routes of Inorganic Mercury and Methyl Mercury in Daphnia manga. Environmental Science & Technology, 38, 808-816.
https://doi.org/10.1021/es034638x
[34]  Agency for Toxic Substances and Disease Registry (1999) Toxicological Profile for Lead. Agency for Toxic Substances and Disease Registry, US Department of Health and Human Services, Public Health Service, Washington DC, 205-93-0606.
[35]  Phillips, D.J.H. (1976) The Common Mussel Mytilus edulis as an Indicator of Pollution by Zinc, Cadmium, Lead and Copper. II. Relationship of Metals in the Mussel to Those Discharged by Industry. Marine Biology, 38, 71-80.
https://doi.org/10.1007/BF00391487
[36]  Dallinger, R. and Wieser, W. (1984) Patterns of Accumulation, Distribution and Liberation of Zn, Cu, Cd and Pb in Different Organs of the Land Snail Helix pomatia L. Comparative Biochemistry and Physiology Part C: Comparative Pharmacology, 79, 117-124.
https://doi.org/10.1016/0742-8413(84)90173-7
[37]  Pyatt, F.B., Metcalfe, M.R. and Pyatt, J.A. (2003) Copper Bioaccumulation by the Freshwater Snail Lymnaea peregra: Toxicological Marker of Environmental and Human Health? Environmental Toxicology and Chemistry, 22, 561-564.
https://doi.org/10.1002/etc.5620220314
[38]  Langston, W.J., Bebianno, M.J. and Burt, G.R. (1998) Metal Handling Strategies in Molluscs. In: Langston, W. and Bebianno, M.J., Eds., Metal Metabolism in Aquatic Environments, Springer, Boston, 219-283.
https://doi.org/10.1007/978-1-4757-2761-6_8
[39]  Szefer, P., Frelek, K., Szefer, K., Lee, C.B., Kim, B.S., Warzocha, J., Zdrojewska, I. and Ciesielski, T. (2002) Distribution and Relationships of Trace Metals in Soft Tissue, Byssus and Shells of Mytilus edulis trossulus from the Southern Baltic. Environmental Pollution, 120, 423-444.
https://doi.org/10.1016/S0269-7491(02)00111-2
[40]  Yap, C.K., Cheng, W.H., Ismail, A., Rahim Ismail, A. and Tan, S.G. (2009) Biomonitoring of Heavy Metal Concentrations in the Intertidal Area of Peninsular Malaysia by Using Nerita lineata. Toxicological and Environmental Chemistry, 91, 29-41.
https://doi.org/10.1080/02772240801968706
[41]  Turkmen, A. and Mustafa, T. (2004) The Seasonal Variation of Heavy Metals in the Suspended Particulate Material in the Iskenderun Bay (Nort-Eastern Mediterranean Sea, Turkey). E.U. Journal of Fisheries & Aquatic Science, 21, 307-311
[42]  Fang, Z.Q., Cheung, R.Y.H. and Wong, M.H. (2001) Heavy Metal Concentrations in Edible Bivalves and Gastropods Available in Major Markets of the Peral River Delta. Journal of Environmental Sciences, 13, 210-217.
[43]  De Silva, J.J.R.F. (1978) Interaction of Chemical Elements with Biological Systems. In: Williams, R.J. and De Silva, J.J.R.F., Eds., New Trend in Bioinorganic Chemistry, Academic Press, London, 449-484
[44]  Trinh, X.G. (2001) Analysis and Estimation of Trace Metals in Seawater and Sediment in the South China Sea, Area IV: Vietnamese Waters. Proceedings of the SEAFDEC Seminar on Fishery Resources in the South China Sea, Area IV: Vietnamese Waters, Bangkok, 18-20 September 2000, 374-408.
[45]  Warwick, R.M. (1993) Environmental Impact Studies on Marine Communities: Pragmatical Considerations. Australian Journal of Ecology, 18, 63-80.
https://doi.org/10.1111/j.1442-9993.1993.tb00435.x
[46]  Vaghela, A. (2010) Spatial and Temporal Variations in Population Dynamics of Few Key Rocky Intertidal Macrofauna at Anthropogenically Influenced Intertidal Shoreline. PhD Thesis, Saurashtra University, Gujarat, 206
[47]  Hayette, B., Frederic, G., Samuel, M., Renaud, S. and Noureddine, S. (2006) Seasonal Variations of Cd, Cu, Pb and Zn in the Edible Mollusc Donax Trunculus (Mollusca, Bivavia) from the Gulf of Annaba, Algeria. African Journal of Agriculture Research, 1, 85-90.
[48]  Boudouresque, C.F. and Verlaque, M. (2002). Biological Pollution in the Mediterranean Sea: Invasive versus Introduced Macrophytes. Marine Pollution Bulletin, 44, 32-38.
https://doi.org/10.1016/S0025-326X(01)00150-3

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