Acute toxicity assay using mysid as an alternative test organism in the assessment of the aqueous fraction of sediment.


Journal

Ecotoxicology (London, England)
ISSN: 1573-3017
Titre abrégé: Ecotoxicology
Pays: United States
ID NLM: 9885956

Informations de publication

Date de publication:
Dec 2021
Historique:
accepted: 01 09 2021
pubmed: 18 9 2021
medline: 24 11 2021
entrez: 17 9 2021
Statut: ppublish

Résumé

The evaluation of sediment quality through biological testing of the aqueous fraction can be applied in dredging situations and is associated with a small number of confounding factors. The use of test organisms that are relatively resistant to contaminants is recommended when working with complex mixtures such as sediments. In this study, the sensitivity of the mysid Mysidopsis juniae to ammonia (NH

Identifiants

pubmed: 34533674
doi: 10.1007/s10646-021-02482-7
pii: 10.1007/s10646-021-02482-7
doi:

Substances chimiques

Metals 0
Water Pollutants, Chemical 0
Ammonia 7664-41-7

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

2036-2042

Informations de copyright

© 2021. The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.

Références

Badaró-Pedroso C, Rachid BRF (2002) Capítulo 19 – TIE Técnicas para identificação de agentes tóxicos em amostras líquidas. In: Nascimento IA, Sousa ECPM, Nippe M (eds) Métodos em ecotoxicologia marinha. Aplicações no Brasil. Editora Artes Gráficas e Indústria LTDA, São Paulo, p 217–232
Brown AC, Mclachlan A (1990) Ecology of sandy shores. Elsevier Science Publishers, New York, NY, p 328
Burgess RM, Ho KT, Morrison GE, Chapman G, Denton D (1996) Marine toxicity identification evaluation (TIE). Phase I guidance document. EPA/600/R-96/054, Narragansett, Rhode Island
Burton GA, Johnston EL (2010) Assessing contaminated sediments in the context of multiple stressors. Environ Toxicol Chem 29:2625–2643
doi: 10.1002/etc.332
Chapman PM, Wang F, Germano JD, Batley G (2002) Pore water testing and analysis: the good, the bad and the ugly. Mar Pollut Bull 44(5):359–366
doi: 10.1016/S0025-326X(01)00243-0
Cherkashin SA, Blinova NK (2010) Effect of heavy metals on survival of crustaceans (a Review). Hydrobiological J 46(6):76–87
doi: 10.1615/HydrobJ.v46.i6.80
Day JW (1989) Estuarine ecology. J. Wiley, New York, NY, p 558
USEPA (1991) Methods for aquatic toxicity identification evaluations. Phase I toxicity characterization procedures, 2 Edition. EPA/600/6-91/003, Washington
CONAMA (2012) Resolução no 454, de 01 de novembro de 2012. Estabelece as diretrizes gerais e os procedimentos referenciais para o gerenciamento do material a ser dragado em águas sob jurisdição nacional. Diário Oficial da União, Brasília, Edição no 216 de 08/11/2012
Figuerêdo LP, Nilin J, Queiroz da Silva A, Loureiroc S, Costa-Lotufo LV (2016) Development of a short-term chronic toxicity test with a tropical mysid. Mar Poll Bull 106:104–108
doi: 10.1016/j.marpolbul.2016.03.020
Heijerick DG, Vangheluwe ML, Janssen CR, Dumon G (2000) Selection and use of marine toxicity assays to assess the quality of dredged sediments. In: Gandrass J, Salomons W, Förstner U (eds.) Workshop on River Sediments and Related Dredged Material in Europe—Scientific Background from the Viewpoints of Chemistry, Ecotoxicology and Regulations. GKSS Research Centre, Geesthacht, Germany, p 30–40.
Heinis LJ, Highland TL, Mount DR (2004) Method for testing the aquatic toxicity of sediment extracts for use in identifying organic toxicants in sediments. Environ Sci Technol 38(23):6256–62
doi: 10.1021/es049661c
Hering JG, Morel FMM (1989) Slow coordination reactions in seawater. Geochimica et Cosmochimica Acta 53:611–618
doi: 10.1016/0016-7037(89)90004-5
Ho KT, Burgess RM (2009) Marine Sediment Toxicity Identification Evaluations (TIEs): History, Principles, Methods, and Future Research. Book Series the Handbook of Environmental Chemistry. Springer, Berlin, p 75–95. Volume 5, Part T
Hockett JR, Mount DR (1996) Use of metal chelating agents to differentiate among sources of acute aquatic toxicity. Env Toxicol Chemistry 15(10):1687–1693
doi: 10.1002/etc.5620151006
Holleman AF, Wiberg E (2001) Inorganic Chemistry. Academic Press, San Diego
Lapota D, Duckworth D, Word JQ (2000) Confounding Factors in Sediment Toxicology. Issue Papers, 1–19
Lee CH, Sung CG, Moon SD, Lee JH (2013) Effects of Ammonia on Fertilization Development and Larval Survival in the Northern Pacific Asteroid Asterias amurensis. Bulletin of Environmental Contamination and Toxicology 91:102–106
doi: 10.1007/s00128-013-1014-7
Li H, Zhang J, You J (2018) Diagnosis of complex mixture toxicity in sediments: application of toxicity identification evaluation (TIE) and effect-directed analysis (EDA). Environ Pollut 237:944–954
doi: 10.1016/j.envpol.2017.11.005
Lussier SM, Gentile JH, Walker J (1985) Acute and chronic effects of heavy metals and cyanide on Mysidopsis bahia (Crustacea: Mysidacea). Aquatic Toxicology 7:25–35
doi: 10.1016/0166-445X(85)90034-7
Manap N, Voulvoulis N (2016) Data analysis for environmental impact of dredging. J Clean Prod 137:394–404
doi: 10.1016/j.jclepro.2016.07.109
Mauchline J (1980) The biology of mysids and euphausids. In: Blaxter JHS, Russell FS, Yonge M. (eds.). Adv Mar Biol 18:3–369
doi: 10.1016/S0065-2881(08)60355-7
Máximo MV, Mottolla LSM, Resgalla Jr C (2008) Sensibilidade do ouriço Arbacia lixula (Equinodermata: Equinoidea) em testes de toxicidade. J Braz Soc Ecotox 3(1):47–52
doi: 10.5132/jbse.2008.01.007
Moreira LB, Saes RVST, Peres TF, Taniguchi S, Bícego MC, Marins RV, Abessa DMSA (2019) Toxicity of sediments and dredged material from a semi-arid coastal system to marine invertebrates. Ecotoxicol Environ Contam 14(1):79–89
NBR/ABNT (2017) 15308 - Aquatic ecotoxicology — Acute toxicity — Test with mysids (Crustacea). p. 20
NBR/ABNT (2020) 15350 - Aquatic ecotoxicology — Short-term chronic toxicity — Test method with sea urchin (Echinodermata: Echinoidea). p. 31
Nimmo DR, Hamaker TL (1982) Mysids in toxicity testing — a review. Hydrobiologia 93:171–178
doi: 10.1007/BF00008110
Resgalla Jr C, Poleza F, Souza RC, Máximo MV, Radetski CM (2012) Evaluation of effectiveness of EDTA and sodium thiosulfate in removing metal toxicity toward sea urchin embryo-larval applying the TIE. Chemosphere 89(1):102–107
doi: 10.1016/j.chemosphere.2012.04.033
SAIC - Science Applications International Corporation, 2003. Guide for planning and conducting sediment pore water toxicity identification evaluation (TIE) to determine causes of acute toxicity at navy aquatic sites. Naval Facilities Engineering Service Center. User’s Guide UG-2052-ENV.
Sousa ECPM, Zaroni LP, Bergmann Filho TU, Marconato LA, Kirschbaum AA, Gasparro MR (2012) Acute sensitivity to Nitokra sp benthic copepod to potassium dichromate and ammonia chloride. J Braz Soc Ecotoxicol 7(1):75–81
doi: 10.5132/jbse.2012.01.011
Stojak A, Bonnevie NL, Jones DS (2015) Evaluation of metals, metalloids, and ash mixture toxicity using sediment toxicity testing. Integr Environ Assess Manag 11(1):21–31
doi: 10.1002/ieam.1575
USEPA (1996) Marine toxicity identification evaluation (TIE). Phase I Guidance document. EPA/600/R-96/054
USEPA (2002) Short-term methods for estimating the chronic toxicity of effluents and receiving waters to marine and estuarine organisms. Third Edition – EPA-821-R-02-014.
USEPA (2007) Sediment toxicity identification evaluation (TIE). Phases I, II and III. Guidance document. EPA/600/R-07/080
Verslycke T, Vangheluwe M, Heijerick D, De Schamphelaere K, Van Sprang P, Janssen CR (2003) The toxicity of metal mixtures to the estuarine mysid Neomysis integer (Crustacea: Mysidacea) under changing salinity. Aquatic Toxicology 64:307–315
doi: 10.1016/S0166-445X(03)00061-4
Viitasalo M, Rautio M (1998) Zooplanktivory by Praunus flexuosus (Crustacea: Mysidacea): functional responses and prey selection in relation to prey escape responses. Mar Ecol Prog Ser 174:77–87
doi: 10.3354/meps174077

Auteurs

C Resgalla (C)

School of Sea, Science and Technology, University of Vale do Itajaí - UNIVALI, Rua Uruguai, 458 - 88302-901, Itajaí, Santa Catarina, Brazil. cresgalla@univali.br.

R M Silveira (RM)

School of Sea, Science and Technology, University of Vale do Itajaí - UNIVALI, Rua Uruguai, 458 - 88302-901, Itajaí, Santa Catarina, Brazil.

D C Vieira (DC)

School of Sea, Science and Technology, University of Vale do Itajaí - UNIVALI, Rua Uruguai, 458 - 88302-901, Itajaí, Santa Catarina, Brazil.

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