219
Views
7
CrossRef citations to date
0
Altmetric
Research Articles

Metals concentration and bioaccumulation in the marine-coastal trophic web from Buenos Aires province southern coast, Argentina

, , , , , & show all
Pages 501-523 | Received 07 Sep 2018, Accepted 15 Feb 2019, Published online: 25 Apr 2019

References

  • Gómez N, Licursi M. The Pampean Diatom Index (IDP) for assessment of rivers and streams in Argentina. Aquat Ecol. 2001;35:173–181. doi: 10.1023/A:1011415209445
  • Cappozzo HL, Panebianco MV, Túnez JI. Marine mammals in a changing world. In: Arias AH, Menendez MC, editor. Marine ecology in a Changing World. Florida (FL): Taylor and Francis; 2013. p. 219–259.
  • Bervoets L, Blust R. Metal concentrations in water, sediment and gudgeon (Gobio gobio) from a pollution gradient: relationship with fish condition factor. Environ Pollut. 2003;126(1):9–19. doi: 10.1016/S0269-7491(03)00173-8
  • McCarthy JF, Shugart LR. Biological markers of environmental contamination. In: McCarthy JF, Shugart LR, editor. Biomarkers of environmental contamination. Boca Raton (FL): Lewis Publishers; 1990. p. 3–16.
  • Gerpe MS, De Moreno JEA, Moreno VJ, et al. Cadmium, zinc and copper accumulation in the squid Illex argentinus from the Southwest Atlantic Ocean. Mar Biol. 2000;136:1039–1044. doi: 10.1007/s002270000308
  • Bustamante P, Cosson RP, Gallien I, et al. Cadmium detoxification processes in the digestive gland of cephalopods in relation to accumulated cadmium concentrations. Mar Environ Res. 2002;53:227–241. doi: 10.1016/S0141-1136(01)00108-8
  • Dorneles PR, Lailson-Brito J. Aguiar dos Santos R. Cephalopods and cetaceans as indicators of offshore bioavailability of cadmium off Central South Brazil Bight. Environ Pollut. 2007;148:352–359. doi: 10.1016/j.envpol.2006.09.022
  • Kojadinovic J, Jackson CH, Cherel Y, et al. Multi-elemental concentrations in the tissues of the oceanic squid Todarodes filippovae from Tasmania and the southern Indian Ocean. Ecotoxicol Environ Saf. 2011;74(5):1238–1249. doi: 10.1016/j.ecoenv.2011.03.015
  • Zaixso HE, Ré ME, Morsán E. Capítulo 3: Moluscos costeros de interés económico, actual o potencial [Chapter 3: coastal moluscs of economic importance, current or potential]. In: Zaixso HE, Boraso AL, editor. La Zona Costera Patagónica Argentina. Vol.1, Recursos Biológicos Bentónicos [The Argentinian patagonian coastal zone. Vol.1, Benthonic biological resources]. Comodoro Rivadavia (Argentina): Editorial Universitaria de la Patagonia; 2015. p. 119–299. Spanish.
  • Zeitoun MM, Mehana ESE. Impact of water pollution with heavy metals on fish health: overview and updates. Glob Vet. 2014;12(2):219–231.
  • Carozza C, Lasta C, Ruarte C. Corvina rubia [White croaker]. In: Bezzi S, Akselman R, Boschi EE, editor. Síntesis del estado de las pesquerías marítimas argentinas y de la Cuenca del Plata años 1997-1998, con actualización de 1999 [Synthesis of the state of the Argentinian marine fisheries and of the La Plata basin between 1997-1998, with an update of 1999]. Mar del Plata (Argentina): Instituto Nacional de Investigacion y Desarrollo Pesquero; 2000. p. 53–64. Spanish.
  • Marcovecchio JE. The use of Micropogonias furnieri and Mugil liza as bioindicators of heavy metals pollution in La Plata river estuary, Argentina. Sci Total Environ. 2004;323(1):219–226. doi: 10.1016/j.scitotenv.2003.09.029
  • Gerpe M, Rodríguez D, Moreno VJ, et al. Accumulation of heavy metals in the franciscana (Pontoporia blainvillei) from Buenos Aires Province, Argentina. Lat Am J Aquat Mamm. 2002;1(1):95–106. doi: 10.5597/lajam00013
  • Panebianco MV, Botte S, Negri MF, et al. Heavy metals in liver of the franciscana dolphin, Pontoporia blainvillei, from the southern coast of Buenos Aires, Argentina. Ecotoxicol Environ Contam. 2012;7(1):33–41.
  • Ferreira M, Monteiro SS, Torres J, et al. Biological variables and health status affecting inorganic element concentrations in harbour porpoises (Phocoena phocoena) from Portugal (western Iberian Peninsula). Environ Pollut. 2016;210:293–302. doi: 10.1016/j.envpol.2016.01.027
  • de Carvalho CE V, Di Beneditto APM, Souza CMM. Heavy metal distribution in two cetacean species from Rio de Janeiro state, South-Eastern Brazil. J Mar Biol Assoc U. K. 2008;88(06):1117–1120. doi: 10.1017/S0025315408000325
  • Crespo EA. Franciscana Dolphin. Pontoporia blainvillei. In: Perrin WF, Wursig B, Thewissen JGM, editor. Encyclopedia of marine mammals. San Diego: Academic Press; 2009. p. 463–469.
  • Negri MF, Denuncio P, Panebianco MV, et al. Bycatch of franciscana dolphins Pontoporia blainvillei and the dynamic of artisanal fisheries in the species’ southernmost area of distribution. Braz J Oceanogr. 2012;60(2):149–158. doi: 10.1590/S1679-87592012000200005
  • Viola MN P, Denuncio P, Negri MF, et al. Diet composition of franciscana dolphin Pontoporia blainvillei from southern Buenos Aires, Argentina and its interaction with fisheries. Rev Biol Mar Oceanogr. 2014;49(2):393–400. doi: 10.4067/S0718-19572014000200019
  • Andersen A, Zulaica L. Sistema de gestión ambiental en Puerto Quequén: perspectivas para su implementación [Environmental management systems in Puerto Quequén: prospects for its implementation]. Rev Estud Ambient. 2013;1(1):122–138. Spanish.
  • Vigliano PH. Contribución al conocimiento de la biología de Loligo brasiliensis Blainville 1823 (Mollusca: cephalopoda) en aguas argentinas [Contribution to the knowledge of the biology of Loligo brasiliensis Blainville 1823 (Mollusca: cephalopoda) in waters off Argentina] [dissertation]. La Plata (Argentina): Facultad de Ciencias Naturales y Museo de la Universidad Nacional de La Plata; 1985. Spanish.
  • Macchi GJ, Acha EM. Aspectos reproductivos de las principales especies de peces en la zona común de pesca argentino-uruguaya y en El Rincón [Reproductive aspects of the main fish species from the Argentinian-Uruguayan shared fishing area and from El Rincón]. In: Lasta CA, editor. Resultados de una campaña de evaluación de recursos demersales costeros de la provincia de Buenos Aires y del litoral uruguayo. Mar del Plata (Argentina): Instituto Nacional de Investigación y Desarrollo Pesquero, informe técnico 21; 1994. p. 67–89. Spanish.
  • Pinedo MC, Hohn AA. Growth layer patterns in teeth from the franciscana, Pontoporia blainvillei: developing a model for precision in age estimation. Mar Mamm Sci. 2000;16:1–27. doi: 10.1111/j.1748-7692.2000.tb00901.x
  • Marcovecchio JE, Ferrer LD. Distribution and geochemical partitioning of heavy metals in sediments of the Bahía Blanca estuary, Argentina. J Coast Res. 2005;21:826–834. doi: 10.2112/014-NIS.1
  • Negri MF, Panebianco MV, Denuncio P, et al. Biological parameters of franciscana dolphins, Pontoporia blainvillei, by-caught in artisanal fisheries off southern Buenos Aires, Argentina. J Mar Biol Assoc U. K. 2014;96(04):821–829. doi: 10.1017/S0025315414000393
  • Slooff W, Van Kreijl CF, Baars AJ. Relative liver weights and xenobiotic-metabolizing enzymes of fish from polluted surface waters in the Netherlands. Aquat Toxicol. 1983;4:1–14. doi: 10.1016/0166-445X(83)90057-7
  • Panebianco MV, Negri MF, Botte SE, et al. Essential and non-essential heavy metals in skin and muscle tissues of franciscana dolphins (Pontoporia blainvillei) from the southern Argentina coast. Chem Ecol. 2013;29(6):511–518. doi: 10.1080/02757540.2013.810727
  • Çoğun HY, Yüzereroğlu TA, Firat Ö, et al. Metal concentrations in fish species from the northeast Mediterranean Sea. Environ Monit Assess. 2006;121(1-3):431–438. doi: 10.1007/s10661-005-9142-0
  • Prafulla V, Francis L, Lakshmanan PT. Concentrations of trace metals in the squids, Loligo duvauceli and Doryteuthis sibogae caught from the southwest coast of India. Asian Fish Sci. 2001;14:399–410.
  • Nho EY, Khan N, Choi JY, et al. Determination of toxic metals in cephalopods from South Korea. Anal Lett. 2016;49(10):1578–1588. doi: 10.1080/00032719.2015.1107082
  • Cifuentes O, Escudero D, Medus S, et al. Procedencia del cadmio detectado en el estuario bahiense [Origin of Cd detected in the estuary of Bahia Blanca]. Paper presented at: 18th Argentinian Congress of Sanitation and Environment; 2012 April 18–20; Buenos Aires (Argentina). Spanish.
  • Palumbo A, D’Ischia M, Misuraca G, et al. Structural modifications in biosynthetic melanins induced by metal ions. Biochim Biophys Acta. 1988;964:193–199. doi: 10.1016/0304-4165(88)90166-3
  • Ichihashi H, Kohno H, Kannan K, et al. Multielemental analysis of purpleback flying squid using high resolution inductively coupled plasma-mass spectrometry (HRICP-MS). Environ Sci Technol. 2001;35:3103–3108. doi: 10.1021/es010653v
  • Pecl GT, Moltschaniwskyj NA. Life history of a short-lived squid (Sepioteuthis australis): resource allocation as a function of size, growth, maturation, and hatching season. ICES J Mar Sci. 2006;63(6):995–1004.
  • Penicaud V, Lacoue-Labarthe T, Bustamante P. Metal bioaccumulation and detoxification processes in cephalopods: a review. Environ Res. 2017;155:123–133. doi: 10.1016/j.envres.2017.02.003
  • Andriguetto JM, Haimovici M. Feeding habits of Loligo sanpaulensis Brakoniecki, 1984 (Cephalopoda: Loliginidae) in southern Brazil. Neritica. 1997;11:63–76.
  • Mackey EA O, Epstein MS RD, et al. Elemental composition of liver and kidney tissues of rough-toothed dolphins (Steno bredanensis). Arch Environ Contam Toxicol. 2003;44(4):0523–0532. doi: 10.1007/s00244-002-2039-9
  • Carnelo LGL, De Miguez SR, Marbán L. Heavy metals input with phosphate fertilizers used in Argentina. Sci. Total Environ. 1997;204(3):245–250. doi: 10.1016/S0048-9697(97)00187-3
  • Khillare PS, Jyethi DS, Sarkar S. Health risk assessment of polycyclic aromatic hydrocarbons and heavy metals via dietary intake of vegetables grown in the vicinity of thermal power plants. Food Chem Toxicol. 2012;50(5):1642–1652. doi: 10.1016/j.fct.2012.01.032
  • Moltschaniwskyj NA. Muscle tissue growth and muscle fibre dynamics in the tropical loliginid squid Photololigo sp. Cephalopoda: Loliginidae). Can J Fish Aquat Sci. 1994;51(4):830–835.
  • Thompson JT, Kier WM. Ontogeny of squid mantle function: changes in the mechanics of escape-jet locomotion in the oval squid, Sepioteuthis lessoniana Lesson, 1830. Biol Bull. 2002;203(1):14–26. doi: 10.2307/1543454
  • Chouvelon T, Spitz J, Cherel Y, et al. Species and ontogenic-related differences in d13C and d15N values and Hg and Cd concentrations of cephalopods. Mar Ecol Prog Ser. 2011;433:107–120. doi: 10.3354/meps09159
  • Kojadinovic J, Potier M, Le Corre M, et al. Bioaccumulation of trace elements in pelagic fish from the Western Indian Ocean. Environ Pollut. 2007;146(2):548–566. doi: 10.1016/j.envpol.2006.07.015
  • Mathews T, Fisher NS, Jeffree RA, et al. Assimilation and retention of metals in teleost and elasmobranch fishes following dietary exposure. Mar Ecol Prog Ser. 2008;360:1–12. doi: 10.3354/meps07462
  • Bustamante P, Bocher P, Cherel Y, et al. Distribution of trace elements in tissues of benthic and pelagic fish from the Kerguelen Islands. Sci Total Environ. 2003;313:25–39. doi: 10.1016/S0048-9697(03)00265-1
  • Dietz R, Pacyna J, Thomas JD. AMAP assessment report: Arctic pollution issues. Oslo (Norway): Arctic Monitoring and Assessment Programme; 1998; Chapter 7, Heavy Metals; p. 373–524.
  • Viana F, Huertas R, Danulat E. Heavy metal levels in fish from coastal waters of Uruguay. Arch Environ Contam Toxicol. 2005;48(4):530–537. doi: 10.1007/s00244-004-0100-6
  • Kalay M, Ay Ö, Canli M. Heavy metal concentrations in fish tissues from the Northeast Mediterranean Sea. Bull Environ Contam Toxicol. 1999;63(5):673–681. doi: 10.1007/s001289901033
  • Silva E, Viana ZCV, Souza NFA, et al. Assessment of essential elements and chemical contaminants in thirteen fish species from the Bay Aratu, Bahia, Brasil. Braz J Biol. 2016;76(4):871–877. doi: 10.1590/1519-6984.02415
  • Canli M, Atli G. The relationships between heavy metal (Cd, Cr, Cu, Fe, Pb, Zn) levels and the size of six Mediterranean fish species. Environ Pollut. 2003;121(1):129–136. doi: 10.1016/S0269-7491(02)00194-X
  • Marcovecchio JE, Moreno VJ. Cadmium, zinc and total mercury levels in the tissues of several fish species from La Plata river estuary, Argentina. Environ Monit Assess. 1993;25(2):119–130. doi: 10.1007/BF00549133
  • Law RJ, Fileman CF, Hopkins AD, et al. Concentrations of trace metals in the livers of marine mammals (seals, porpoises and dolphins) from waters around the British Isles. Mar Pollut Bull. 1991;22:183–191. doi: 10.1016/0025-326X(91)90468-8
  • Rodríguez D, Rivero L, Bastida R. Feeding ecology of the franciscana (Pontoporia blainvillei) in marine and estuarine waters of Argentina. Lat Am J Aquat Mamm. 2002;1(1):77–94.
  • Cáceres-Saez I, Guevara SR, Dellabianca NA, et al. Heavy metals and essential elements in Commerson’s dolphins (Cephalorhynchus c. commersonii) from the southwestern South Atlantic Ocean. Environ Monit Assess. 2013;185(7):5375–5386. doi: 10.1007/s10661-012-2952-y
  • Das K, Siebert U, Fontaine M, et al. Ecological and pathological factors related to trace metal concentrations in harbour porpoises Phocoena phocoena from the North Sea and adjacent areas. Mar Ecol Prog Ser. 2004;281:283–295. doi: 10.3354/meps281283
  • Bennett PM, Jepson PD, Law RJ, et al. Exposure to heavy metals and infectious disease mortality in harbor porpoises from England and Wales. Environ Pollut. 2001;112:33–40. doi: 10.1016/S0269-7491(00)00105-6
  • Milessi AC, Jaureguizar A. Evolución temporal del nivel trófico medio de los desembarques en la zona común de pesca argentino-uruguaya años 1989-2010 [Temporal evolution of the mean trophic level of the landings in the Argentinian-Uruguayan shared fishing area between 1989-2010]. Frente Marít. 2013;23:83–93. Spanish.
  • Jefferson TA, Leatherwood S, Webber MA. Marine mammals of the world: FAO species identification guide. Rome (Italy): Food and Agriculture Organization; 1993.
  •  Cardwell RD, DeForest DK, Brix KV, et al. Do Cd, Cu, Ni, Pb, and Zn biomagnify in aquatic ecosystems? In: Whitacre D, editor. Reviews of environmental contamination and Toxicology. New York (NY): Springer; 2013. p. 101–122.
  • Schneider L, Maherb WA, Pottsc J, et al. Trophic transfer of metals in a seagrass food web: bioaccumulation of essential and non-essential metals. Mar Pollut Bull. 2018;131:468–480. doi: 10.1016/j.marpolbul.2018.04.046
  • Falandysz J. Trace metals in squid Illex argentinus. Z für Lebensm-Unters. und Forsch. 1988;187(4):359–361. doi: 10.1007/BF01454428
  • Kehrig H, Costa M, Olaf MALM. Estudo da contaminação por metais pesados em peixes e mexilhão da Baia de Guanabara-Rio de Janeiro [Study of contamination by heavy metals in fish and mussels of Guanabara Bay-Rio de Janeiro]. Trop Oceanogr. 2007;35(1):32–50. Portuguese.
  • Polizzi PS, Boudet LC, Romero MB, et al. Fine scale distribution constrains cadmium accumulation rates in two geographical groups of franciscana dolphin from Argentina. Mar Pollut Bull. 2013;72(1):41–46. doi: 10.1016/j.marpolbul.2013.05.003
  • Di Beneditto APM, Dos Santos MVB, Vidal MV. Comparison between the diet of two dolphins from south-eastern Brazil: proximate-composition and caloric value of prey species. J Mar Biol Assoc U. K. 2009;89(5):903–905. doi: 10.1017/S0025315409001519
  • Yang J, Miyazaki N. Moisture content in Dall’s porpoise (Phocoenoides dalli) tissues: a reference base for conversion factors between dry and wet weight trace element concentrations in cetaceans. Environ Pollut. 2003;121(3):345–347. doi: 10.1016/S0269-7491(02)00239-7
  • Jereb P, Roper CFE, eds. Cephalopods of the World: an annotated and illustrated catalogue of species known to date. Vol. 2, Myopsid and Oegopsid Squids. Rome (Italy): FAO; 2010.
  • Avigliano E, Schenone NF, Volpedo AV, et al. Heavy metals and trace elements in muscle of silverside (Odontesthes bonariensis) and water from different environments (Argentina): aquatic pollution and consumption effect approach. Sci Total Environ. 2015;506:102–108. doi: 10.1016/j.scitotenv.2014.10.119
  • Silva E, Costa FN, Souza TL, et al. Assessment of trace elements in tissues of fish species: multivariate study and safety evaluation. J Braz Chem Soc. 2016;00(00):1–12.
  • Baptista G, Kehrig HA, Di Beneditto APM, et al. Mercury, selenium and stable isotopes in four small cetaceans from the Southeastern Brazilian coast: influence of feeding strategy. Environ Pollut. 2016;218:1298–1307. doi: 10.1016/j.envpol.2016.08.088
  • FAO.org [Internet]. Rome (Italy): Food and Agriculture Organization of the United Organizations, FishStat; [cited 2017 Aug 27]. Available from: http://www.fao.org/fishery/species/search/en

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.