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Human health risks of metalloids and metals in muscle tissue of silver carp Hypophthalmichthys molitrix (Valenciennes, 1844) from Lake Flag Boshielo, South Africa

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Pages 405-411 | Received 08 May 2018, Accepted 18 Oct 2018, Published online: 30 Nov 2018

References

  • Addo-Bediako A, Marr SM, Jooste A, Luus-Powell WJ. 2014a. Are metals in the muscle tissue of Mozambique tilapia a threat to human health? A case study of two impoundments in the Olifants River, Limpopo province, South Africa. International Journal of Limnology 50: 201–210. doi: 10.1051/limn/2014091
  • Addo-Bediako A, Marr SM, Jooste A, Luus-Powell WJ. 2014b. Human health risk assessment for silver catfish Schilbe intermedius Ruppell, 1832, from two impoundments in the Olifants River, Limpopo, South Africa. Water SA 40: 607–614. doi: 10.4314/wsa.v40i4.5
  • Anderson RO, Neumann RM. 1996. Length, weight, and associated structural indices. In: Murphy BR, Willis DW (Eds), Fisheries Techniques. Bethesda, Maryland: American Fisheries Society. pp 447–482.
  • Ashraf M, Zafar A, Rauf A, Mehboob S, Qureshi NA. 2011. Nutritional values of wild and cultivated silver carp (Hypophthalmichthys molitrix) and grass carp (Ctenopharyngodon idella). International Journal of Agriculture and Biology 13: 210–214.
  • Ashton PJ, Dabrowski JM. 2011. An overview of water quality and the causes of poor water quality in the Olifants River Catchment. WRC Report No. K8/887. Pretoria: Water Research Commission.
  • ATSDR (Agency for Toxic Substances and Disease Registry). 1999. Toxicological profile for mercury. Atlanta, GA: Agency for toxic substances and disease registry, US Department of Health and Human Services, Public Health Service. http://www.atsdr.cdc.gov/toxprofiles/index.asp [Accessed 20 March 2018].
  • ATSDR. 2003. Toxicological profile for selenium. Atlanta, GA: Agency for toxic substances and disease registry, U.S. Department of Health and Human Services, Public Health Service. http://www.atsdr.cdc.gov/toxprofiles/index.asp [Accessed 20 March 2018].
  • ATSDR. 2004. Toxicological profile for cobalt. Atlanta, GA: Agency for Toxic Substances and Disease Registry, U.S. Department of Health and Human Services, Public Health Service. http://www.atsdr.cdc.gov/toxprofiles/index.asp [Accessed 20 March 2018].
  • ATSDR. 2005. Toxicological profile for zinc. Atlanta, GA: Agency for toxic substances and disease registry, U.S. Department of Health and Human Services, Public Health Service. http://www.atsdr.cdc.gov/toxprofiles/index.asp [Accessed 20 March 2018].
  • ATSDR. 2007a. Toxicological profile for arsenic. Atlanta, GA: Agency for toxic substances and disease registry, U.S. Department of Health and Human Services, Public Health Service. http://www.atsdr.cdc.gov/toxprofiles/index.asp [Accessed 20 March 2018].
  • ATSDR. 2007b. Toxicological profile for lead. Atlanta, GA: Agency for Toxic Substances and Disease Registry, U.S. Department of Health and Human Services, Public Health Service. http://www.atsdr.cdc.gov/toxprofiles/index.asp [Accessed 20 March 2018].
  • ATSDR. 2012a. Toxicological profile for cadmium. Atlanta, GA: Agency for toxic substances and disease registry, U.S. Department of Health and Human Services, Public Health Service. http://www.atsdr.cdc.gov/toxprofiles/index.asp [Accessed 20 March 2018].
  • ATSDR. 2012b. Toxicological profile for chromium. Atlanta, GA: Agency for toxic substances and disease registry, U.S. Department of Health and Human Services, Public Health Service. http://www.atsdr.cdc.gov/toxprofiles/index.asp [Accessed 20 March 2018].
  • ATSDR. 2012c. Toxicological profile for vanadium. Atlanta, GA: Agency for toxic substances and disease registry, U.S. Department of Health and Human Services, Public Health Service. http://www.atsdr.cdc.gov/toxprofiles/index.asp [Accessed 21 March 2018].
  • Azeez OI, Myburgh JG, Meintjes RA, Oosthuizen MC, Chamunorwa JP. 2017. Histomorphology, ultrastructure and fatty acid composition of the adipose tissue in pansteatitis, the potentials in understanding the underlying mechanism and diagnosis of pansteatitis in the Nile crocodile. Lipids in Health and Disease 16: 1–19. doi: 10.1186/s12944-016-0405-2
  • Bangma JT, Reiner JL, Botha H, Cantu TM, Gouws MA, Guillette MP, et al. 2017. Tissue distribution of perfluoroalkyl acids and health status in wild Mozambique tilapia (Oreochromis mossambicus) from Loskop Dam, Mpumalanga, South Africa. Journal of Environmental Sciences 61: 59–67. doi: 10.1016/j.jes.2017.03.041
  • Bervoets L, Blust R. 2003. Metal concentrations in water, sediment and gudgeon (Gobio gobio) from a pollution gradient: relationship with fish condition factor. Environmental Pollution 26: 9–19. doi: 10.1016/S0269-7491(03)00173-8
  • Brits DL. 2009. Distribution of the silver carp, Hypophthalmichthys molitrix (Valenciennes, 1844), in the Flag Boshielo Dam (Arabie Dam) and its potential influences on the ecology of the dam. PhD thesis, University of Limpopo, South Africa.
  • Buchtová H, Ježek F. 2011. A new look at the assessment of the silver carp (Hypophthalmichthys molitrix Val.) as a food fish. Czech Journal of Food Sciences 29: 487–497. doi: 10.17221/392/2010-CJFS
  • Castro-González MI, Méndez-Armenta M. 2008. Heavy metals: Implications associated to fish consumption. Environmental Toxicology and Pharmacology 26: 263–271. doi: 10.1016/j.etap.2008.06.001
  • Chen P, Wiley EO, Mcnyset KM. 2007. Ecological niche modeling as a predictive tool: silver and bighead carps in North America. Biological Invasions 9: 43–51. doi: 10.1007/s10530-006-9004-x
  • Cooke SL, Hill WR. 2010. Can filter-feeding Asian carp invade the Laurentian Great Lakes? A bioenergetic modelling exercise. Freshwater Biology 55: 2138–2152. doi: 10.1111/j.1365-2427.2010.02474.x
  • Cooke SL. 2016. Anticipating the spread and ecological effects of invasive bigheaded carps (Hypophthalmichthys spp.) in North America: a review of modeling and other predictive studies. Biological Invasions 18: 315–344. doi: 10.1007/s10530-015-1028-7
  • FAO (Food and Agriculture Organisation of the United Nations). 2017. Fishery and Aquaculture Statistics 2015. Rome: FAO. FAO yearbook.
  • Froese R. 2006. Cube law, condition factor and weight-length relationships: history, meta-analysis and recommendations. Journal of Applied Ichthyology 22: 241–253. doi: 10.1111/j.1439-0426.2006.00805.x
  • Heath RGM, Du Preez HH, Genthe B, Avenant-Oldewage A. 2004. Freshwater fish and human health. Reference guide. WRC Report No. TT212/04. Pretoria: Water Research Commission.
  • Heath R, Coleman T, Engelbrecht J. 2010. Water quality overview and literature review of the ecology of the Olifants River. WRC Report No. TT452/10. Pretoria: Water Research Commission.
  • Huchzermeyer KDA, Govender D, Pienaar DJ, Deacon AR. 2011. Steatitis in wild sharptooth catfish, Clarias gariepinus (Burchell), in the Olifants and Lower Letaba rivers in the Kruger National Park, South Africa. Journal of Fish Diseases 34: 489–498. doi: 10.1111/j.1365-2761.2011.01267.x
  • Huchzermeyer KDA, Woodborne S, Osthoff G, Hugo A, Hoffman AC, Kaiser H, Steyl JCA, Myburgh JG. 2017. Pansteatitis in polluted Olifants River impoundments: nutritional perspectives on fish in a eutrophic lake, Lake Loskop, South Africa. Journal of Fish Diseases 40: 1–16. doi: 10.1111/jfd.12488
  • IARC (International Agency for Research on Cancer). 2012. Agents classified by the IARC Monographs. Volumes 1–105. International Agency for Research on Cancer, IARC Lyon France. http://monographs.iarc.fr/ENG/Classification/ [Accessed 22 March 2018].
  • Jooste A, Marr SM, Addo-Bediako A, Luus-Powell WJ. 2014. Metal bioaccumulation in the fish of the Olifants River, Limpopo province, South Africa, and the associated human health risk: A case study of rednose labeo Labeo rosae from two impoundments. African Journal of Aquatic Science 39: 271–277. doi: 10.2989/16085914.2014.945989
  • Jooste A, Marr SM, Addo-Bediako A, Luus-Powell WJ. 2015. Sharptooth catfish shows its metal: A case study of metal contamination at two impoundments in the Olifants River, Limpopo River system, South Africa. Ecotoxicology and Environmental Safety 112: 96–104. doi: 10.1016/j.ecoenv.2014.10.033
  • Kamilov BG. 2014. Age and growth of the silver carp (Hypophthalmichthys molitrix Val.) in Tudakul reservoir, Uzbekistan. Croatian Journal of Fisheries 72: 12–16. doi: 10.14798/72.1.702
  • Kolar CS, Chapman DC, Courtenay WR, Housel CM, Williams JD, Jennings DP. 2007. Bigheaded carps: a biological synopsis and environmental risk assessment (Special publication 33). Bethesda, Maryland: American Fisheries Society.
  • Lebepe J, Marr SM, Luus-Powell WJ. 2016. Metal contamination and human health risk associated with the consumption of Labeo rosae from the Olifants River system. African Journal of Aquatic Science 41: 161–170. doi: 10.2989/16085914.2016.1138100
  • Lowe S, Browne M, Boudjelas S, De Poorter M. 2000. 100 of the world’s worst invasive alien species: A selection from the global invasive species database, The Invasive Species Specialist Group (ISSG) a specialist group of the Species Survival Commission (SSC) of the World Conservation Union (IUCN), Auckland. Updated and reprinted version: November 2004. Electronic version: www.issg.org/booklet.pdf. [Accessed 06 April 2017].
  • Lübcker N, Zengeya TA, Dabrowski J, Robertson MP. 2014. Predicting the potential distribution of invasive silver carp Hypophthalmichthys molitrix in South Africa. African Journal of Aquatic Science 39: 157–165. doi: 10.2989/16085914.2014.926856
  • Lübcker N, Dabrowski J, Zengeya TA, Oberholster PJ, Hall G, Woodborne S, Robertson MP. 2016. Trophic ecology and persistence of invasive silver carp Hypophthalmichthys molitrix in an oligotrophic South African impoundment. African Journal of Aquatic Science 41: 399–411. doi: 10.2989/16085914.2016.1246356
  • Majnoni F, Rezaei M, Mansouri B, Hamidian AH. 2013. Metal concentrations in tissues of common carp, Cyprinus carpio, and silver carp, Hypophthalmichthys molitrix from the Zarivar Wetland in Western Iran. Archives of Polish Fisheries 21: 11–18. doi: 10.2478/aopf-2013-0002
  • Marr SM, Jooste A, Addo-Bediako A, Luus-Powell WJ. 2015. Are catfish from metal polluted impoundments in the Olifants River, South Africa, safe for human consumption? Inland Waters 5: 215–223. doi: 10.5268/IW-5.3.697
  • Marr SM, Lebepe J, Steyl JCA, Smit WJ, Luus-Powell WJ. 2017. Bioaccumulation of selected metals in the gill, liver and muscle tissue of rednose labeo Labeo rosae from two impoundments on the Olifants River, Limpopo river system, South Africa. African Journal of Aquatic Science 42: 123–130. doi: 10.2989/16085914.2017.1351915
  • Menezes RF, Attayde JL, Vasconcelos FR. 2010. Effects of omnivorous filter-feeding fish and nutrient enrichment on the plankton community and water transparency of a tropical reservoir. Freshwater Biology 55: 767–779. doi: 10.1111/j.1365-2427.2009.02319.x
  • Oberholster PJ, Botha AM, Hill L, Strydom WF. 2017. River catchment responses to anthropogenic acidification in relationship with sewage effluent: an ecotoxicology screening application. Chemosphere 189: 407–417. doi: 10.1016/j.chemosphere.2017.09.084
  • Prinsloo JF, Schoonbee HJ. 1987. Investigations into the feasibility of a duck-fish-vegetable integrated agriculture-aquaculture system for developing areas in South Africa. Water SA 13: 109–118.
  • R Development Core Team (2018) R: A Language and Environment for Statistical Computing. R Foundation for Statistical Computing, Vienna, Austria. http://www.R-project.org [Accessed 02 March 2018].
  • Ridgway JL, Bettoli PW. 2017. Distribution, age structure, and growth of Bigheaded Carps in the Lower Tennessee and Cumberland Rivers. Southeastern Naturalist 16: 426–442. doi: 10.1656/058.016.0309
  • Sara JR, Marr SM, Smit WJ, Erasmus LJC, Luus-Powell WJ. 2017a. Human health risks of metals and metalloids in muscle tissue of Synodontis zambezensis Peters, 1852 from Flag Boshielo Dam, South Africa. African Journal of Aquatic Science 42: 287–291. doi: 10.2989/16085914.2017.1361378
  • Sara JR, Weyl OLF, Marr SM, Smit WJ, Fouche PSO, Luus-Powell WJ. 2017b. Gill net catch composition and catch per unit effort in Flag Boshielo Dam, in Limpopo Province, South Africa. Water SA 43: 463–469. doi: 10.4314/wsa.v43i3.11
  • Sass GG, Cook TR, Irons KS, McClelland MA, Michaels NN, O’Hara TM, Stroub MR. 2010. A mark-recapture population estimate for invasive silver carp (Hypophthalmichthys molitrix) in the La Grange Reach, Illinois River. Biological Invasions 12: 433–436. doi: 10.1007/s10530-009-9462-z
  • Schoonbee HJ, Brandt FDW, Bekker CAL. 1978. Induced spawning of the two phytophagous Chinese carp species Ctenopharyngodon idella (Val.) and Hypopthalmichthys molitrix (Val.) with reference to the possible use of the grass carp in the control of aquatic weeds. Water SA 4: 93–103.
  • Starling FLDRM. 1993. Control of eutrophication by silver carp (Hypophthalmichthys molitrix) in the tropical Paranoa Reservoir (Brasilia, Brazil): a mesocosm experiment. Hydrobiologia 257: 143–152. doi: 10.1007/BF00765007
  • US-EPA (United States Environmental Protection Agency). 2000. Guidance for assessing chemical contaminant data for use in fish advisories. Vol 2: Risk assessment and fish consumption limits. Third edition. Washington, DC: EPA 823-B-00-008. Office of Health and Environmental Assessment. Available at http://www.epa.gov/IRIS/ [Accessed 15 March 2018].
  • US-EPA. 2013. Integrated Risk Information System (IRIS). Cincinnati, OH: United States Environmental Protection Agency, Environmental Criteria and Assessment Office. http://www.epa.gov/IRIS/ [Accessed 15 March 2018].
  • Vujković G, Karlović D, Vujković I, Vörösbaranyi I, Jovanović B. 1999. Composition of muscle tissue lipids of silver carp and bighead carp. Journal of the American Oil Chemists’ Society 76: 475–80. doi: 10.1007/s11746-999-0027-1
  • Williamson CJ, Garvey JE. 2005. Growth, fecundity, and diets of newly established silver carp in the middle Mississippi River. Transactions of the American Fisheries Society 134: 1423–1430. doi: 10.1577/T04-106.1
  • Yang Z, Tang HY, Que YF, Xiong MH, Zhu D, Wang X, Qiao Y. 2016. Length-weight relationships and basic biological information on 64 fish species from lower sections of the Wujiang River, China. Journal of Applied Ichthyology 32: 386–390. doi: 10.1111/jai.13016

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