contents of 23 trace elements (Sc, V, Cr, Mn, Fe, Co, Zn, As, Se, Br, Rb, Sr, Mo, Ag, Sb, I, Ba, La, Ce, Sm, Eu, Hf, Ta) were quantitatively determined in soft tissues and shells of mass non-indigenous bivalve mussels—farmed Pacific oysters ( Crassostrea gigas ) and farmed and wild invasive Mediterranean mussels ( Mytilus galloprovincialis ) at the Atlantic coast of South Africa. The study revealed that the contents of the majority of elements in the soft tissues of both species were higher than those in the shells. The tissues of wild invasive Mediterranean mussels contain higher levels of a range of trace elements comparing to farmed mussels. The tissues of Pacific oysters contain much higher levels of almost all elements studied compared to the tissues of Mediterranean mussels. Higher content of zinc in the mussels and oysters from Saldanha Bay may evidence anthropogenic pollution of the bay’s ecosystem by this metal, which necessitates continued monitoring of levels of potentially toxic metals. Both alien species, and especially Pacific oysters, may serve as reliable biomonitors for trace elements in marine ecosystems. Both species are rich in essential elements and provide nutritionally-valuable seafoods.
KeywordsInvasive Bivalve MollusksChemical Composition<i>Crassostrea gigas</i><i>Mytilus galloprovincialis</i>AquacultureWater QualitySouth Africa
DAFF (2012) Department of Agriculture, Forestry and Fisheries. Biodiversity Risk and Benefit Assessment (BRBA) of Alien Species in Aquaculture in South Africa South African Molluscan Shellfish Monitoring & Control Programme Annual Report 2011. http://www.anchorenvironmental.co.za/Documents/Pdfs/DAFF%20Biodiversity%20Risk%20and% 20Benefit%20Assessment%20%28BRBA%29%20/C%20gigas%20BRBA%2012.12.12.pdf
Olivier, D., Heinecken, L. and Jackson, S. (2013) Mussel and Oyster Culture in Saldanha Bay, South Africa: Potential for Sustainable Growth, Development and Employment Creation. Food Security, 5, 251-267 http://link.springer.com/article/10.1007%2Fs12571-013-0244-1#page-1 http://dx.doi.org/10.1007/s12571-013-0244-1
Naylor, R.L., Williams, S.L. and Strong, D.R. (2001) Aquaculture—A Gateway for Exotic Species. Science, 294, 1655-1656. http://dx.doi.org/10.1126/science.1064875
Stenton-Dozey, J., Probyn, T. and Busb, A. (2001) Impact of Mussel Raft-Culture on Benthic Macrofauna, in Situ Oxygen Uptake, and Nutrient Fluxes in Saldanha Bay, South Africa. Canadian Journal of Fish and Aquaculture Science, 58, 1021-1031. http://science.report/author/j-stenton-dozey/
Wolff, W.J. and Reise, K. (2002) Oyster Imports as a Vector for the Introduction of Alien Species into Northern and Western European Coastal Waters. In: Leppakoski, E., Gollasch, S. and Olenin, S., Eds., Invasive Aquatic Species of Europe, Kluwer Academic Publishers, The Netherlands, 193-205. https://www.rug.nl/research/portal/publications/invasive-aquatic-species-of-europe--distribution -impacts-and-management%28eb382062-170f-4077-81db-c8b022717bab%29.html http://dx.doi.org/10.1007/978-94-015-9956-6_21
Haupt, T.M., Griffiths, C.L., Robinson, T.B. and Tonin, A.F.G. (2010) Oysters as Vectors of Marine Aliens, with Notes on Four Introduced Species Associated with Oyster Farming in South Africa. African Zoology, 45, 52-62. http://www.bioone.org/doi/abs/10.3377/004.045.0101 http://dx.doi.org/10.3377/004.045.0101
Griffiths, C.L., Hockey, P.A.R., van Erkom Schurink, C. and Le Roux, P.J. (1992) Marine Invasive Aliens on South African Shores: Implications for Community Structure and Trophic Functioning. In: Payne, A.I.L., Brink, K.H., Mann, K.H. and Hilborn, S.R., Eds., Benguela Trophic Functioning, African Journal of Marine Sciences, 12, 713-722.
Hanekom, N. and Nel, P. (2002) Invasion of Sandflats in Langebaan Lagoon, South Africa, by the Alien Mussel Mytilus galloprovincialis: Size, Composition and Decline of the Populations. African Zoology, 37, 197-208. http://reference.sabinet.co.za/document/EJC17835
Robinson, T.B., Griffiths, C.L., McQuaid, C.D. and Rius, M. (2005) Marine Alien Species of South Africa—Status and Impacts. African Journal of Marine Science, 27, 297-306. http://planet.botany.uwc.ac.za/nisl/invasives/refs/robinson%2520et%2520al.%25202005.pdf http://dx.doi.org/10.2989/18142320509504088
Ren, J.S., Ross, A.H. and Schiel, D.R. (2000) Functional Descriptions of Feeding and Energetics of the Pacific Oyster Crassostrea gigas in New Zealand. Marine Ecology Progress, 208, 119-130. http://www.int-res.com/articles/meps/208/m208p119.pdf http://dx.doi.org/10.3354/meps208119
Neal, C. (2007) Rare Earth Element Concentrations in Dissolved and Acid Available Particulate Forms for Eastern UK Rivers. Hydrology and Earth System Science, 11, 313-327. http://www.hydrol-earth-syst-sci.net/11/313/2007/hess-11-313-2007.pdf http://dx.doi.org/10.5194/hess-11-313-2007
Grawunder, A. and Merten, D. (2012) Rare Earth Elements in Acidic Systems—Biotic and Abiotic Impacts. In: Kothe, E. and Varma, A., Eds., Bio-Geo Interactions in Metal-Contaminated Soils, Springer, New York, 81-97. http://link.springer.com/book/10.1007/978-3-642-23327-2 http://dx.doi.org/10.1007/978-3-642-23327-2_4
Weltje, J. (2003) Bioavailability of Lanthanides to Freshwater Organisms, Speciation, Accumulation and Toxicity. Thesis of Dissertation, DUP Science, Delft, 1-184.
Goldberg, E.D. (1975) The Mussel Watch: A First Step in Global Marine Monitoring. Marine Pollution Bulletin, 6, 111-114. http://dx.doi.org/10.1016/0025-326X(75)90271-4
Klumpp, D.W. and Burdon-Jones, C. (1982) Investigations of the Potential of Bivalve Mollusks as Indicators of Heavy Metal Levels in Tropical Marine Waters. Australian Journal of Marine and Freshwater Research, 33, 285-300. http://dx.doi.org/10.1071/MF9820285
Goldberg, E.D. and Bertine, K.K. (2000) Beyond the Mussel Watch: New Directions for Monitoring Marine Pollution. The Science of the Total Environment, 247, 165-174. http://www.ncbi.nlm.nih.gov/pubmed/10803545 http://dx.doi.org/10.1016/s0048-9697(99)00488-x
Frontasyeva, M.V. (2011) Neutron Activation Analysis for the Life Sciences: A Review. Physics of Particles and Nuclei, 42, 332-378. http://www.springerlink.com/content/f836723234434m27 http://dx.doi.org/10.1134/s1063779611020043
Pavlov, S.S., Dmitriev, A.Y., Chepurchenko, I.A. and Frontasyeva, M.V. (2014) Automation System for Measurement of Gamma-Ray Spectra of Induced Activity for Neutron Activation Analysis at the Reactor IBR-2 of Frank Laboratory of Neutron Physics at the Joint Institute for Nuclear Research. Physics of Elementary Particles and Nuclei, 11, 737-742. http://www1.jinr.ru/Pepan_letters/panl_2014_6/06_pavl.pdf
Beliaeff, B., O’Connor, T.O. and Claisse, D. (1998) Comparison of Chemical Concentrations in Mussels and Oysters from the United States and France. Environmental Monitoring and Assessment, 49, 87-95. http://link.springer.com/article/10.1023%2FA%3A1005766321323 http://dx.doi.org/10.1023/A:1005766321323
Vazquez, F., Aguilera, G., Delgado, D. and Marquez, A. (1990) Trace and Heavy Metals in the Oyster Crassostrea virginica, San Andres Lagoon, Tamaulipas, Mexico. Bulletin of Environmental Contamination and Toxicology, 45, 907-914. http://link.springer.com/article/10.1007%2FBF01701092 http://dx.doi.org/10.1007/BF01701092
Watling, H.R. and Watling, R.J. (1982) Metal Concentrations in Oysters from the Southern African Coast. Bulletin of Environmental Contamination and Toxicology, 28, 460-466. http://link.springer.com/article/10.1007%2FBF01607711#page-1 http://dx.doi.org/10.1007/BF01607711
Martincié, D., Nürnberg, H.W., Stoeppler, M. and Branica, M. (1984) Bioaccumulation of Heavy Metals by Bivalves from Lim Fjord (North Adriatic Sea). Marine Biology, 81, 177-188. http://dx.doi.org/10.1007/BF00393116
Stankovic, S., Jovic, M., Stankovic, A.R. and Katsikas, L. (2012) Heavy Metals in Seafood Mussels. Risk for Human Health. In: Lichthouse, E., Schwarzbauer, J. and Robert, D., Eds., Environmental Chemistry for a Sustainable World, Nanotechnology and Health Risk, Springer, Dordrecht, 311-373.
Wilbur, K.W. (1972) Shell Formation in Mollusks. In: Florkin, M. and Scheer, B.T., Eds., Chemical Zoology, Volume 7, Academic Press, New York and London, 103-146.
Bay, S. and Lagoon, L. (2012) State of the Bay 2011. Technical Report, Saldanha Bay Water Quality Trust, 1-271.
Pavlov, D.F., Frontasyeva, M.V., Pavlov, S.S. and Pankratova, Y.S. (2005) Distribution of Trace Elements in Freshwater Ecosystem Compartments of Man-Made Rybinsk Reservoir (Central Russia) Using Epithermal Neutron Activation Analysis. “Ovidius University” Annals of Chemistry, 16, 72-75.
Goryaynova, Z.I., Frontasyeva, M.V., Pavlov, D.F. and Pankratova, Y.V. (2007) Chemical Composition Study of the Rybinsk Reservoir Ecosystem Using NAA. In: Granja, C., Leroy, C. and Stekl, I., Eds., Proceedings of Summer School “Nuclear Physics Methods and Accelerators in Biology and Medicine-2007”, American Institute of Physics, New York, 226-227. http://dx.doi.org/10.1063/1.2825789
Posin, D.Q. (1942) Investigations with Radioactive Strontium, Phosphorus and Iron. Proceedings of Montana Academy of Sciences, 3, 10-15.
Pors Nielsen, S. (2004) The Biological Role of Strontium. Bone, 35, 583-588. http://www.thebonejournal.com/article/S8756-3282%2804%2900181-4/abstract http://dx.doi.org/10.1016/j.bone.2004.04.026
Irwin, R., van Mouverick, M., Stevens, L., Seese, M. and Basham, W. (1997) In Environmental Contaminants Encyclopedia. National Park Service, Water Resources Division, Fort Collins. http://www.nature.nps.gov/hazardssafety/toxic/uranium.pdf
Joiris, C. (2014) Ecotoxicology of Stable Pollutants in African Marine Ecosystems. UNESCO—Encyclopedia of Life Support Systems (EOLSS), Volume 1, Area Studies—Africa (Regional Sustainable Development Revue) http://www.eolss.net/outlinecomponents/Regional-Sustainable-Development-Review-Africa.aspx
Sarkar, S.K., Cabral, E., Chatterjee, M., Cardoso, I., Bhattacharya, A.K. and Satrathy, K.K. (2008) Biomonitoring of Heavy Metals Using the Bivalve Molluscs in Sunderban Mangrove Wetland, Northeast Coast of Bay of Bengal (India): Possible Risks to Human Health. CLEAN—Soil, Air, Water, 36, 187-194. http://dx.doi.org/10.1002/clen.200700027
Kesavan, K., Murugan, A., Tesan, V.V. and Vejay Kumar, B.S. (2013) Heavy Metal Accumulation in Mollusks and Sediment from Uppanar Estuary, South East Coast of India. Thalassas, 29, 15-21. http://thalassas.webs.uvigo.es/Thalassas%2029%282%29/002%20Thalassas%2029%282%29.pdf