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Comparative toxicity of a brominated flame retardant (tetrabromobisphenol A) on microalgae with single and multi-species bioassays
Authors:Debenest Timothée  Petit Anne-Nöelle  Gagné François  Kohli Mohan  Nguyen Nien  Blaise Christian
Institution:a Environment Canada, Fluvial Ecosystem Research, 105 McGill Street, 7 Floor, Montréal (Québec), Canada H2Y 2E7
b LCBM, UMR 5249 CEA-CNRS-UJF iRTSV, CEA/Grenoble, Bât K, 7 rue des Martyrs, 38054 Grenoble Cedex 09, France
c Environment Canada, National Water Research Institute, 867 Lakeshore Road, P.O. Box 5050, Burlington (Ontario), Canada L7R 4A6
Abstract:The potential threat of emerging chemicals to the aquatic flora is a major issue. The purpose of the study was to develop a multispecies microalgae test in order to determine the impact of species interactions on the cytoxicity of an emergent toxic contaminant: the tetrabromobisphenol A (TBBPA). Single and multi-species tests were thus performed to study the effects of this flame retardant on two microalgae (Pseudokirchneriella subcapitata and Nitzschia palea) commonly observed in freshwater. A synthetic medium was designed to allow the growth of both species. The algae were exposed to 1.8, 4.8, 9.2, 12.9 and 16.5 μM of TBBPA for 72 h. After staining with fluorescein diacetate (FDA), viable cells of each alga species were analyzed by flow cytometry based on chlorophyll autofluorescence and intracellular esterase activity. Density and abundance of viable cells were assessed to follow the population growth and the cell viability. In TBBPA treated samples, the growth of the two microalgae was significantly inhibited at the three highest concentrations (9.2, 12.9 and 16.5 μM) in the two tests. At the end of the experiment (t = 72 h), the cell viability was also significantly smaller at these concentrations. The decreases of growth rate and viable cell abundance in TBBPA treated populations of N. palea were significantly higher in multi-species test in comparison with the single-species test. No significant differences were noticed between the two tests for P. subcapitata populations exposed to TBBPA.
Keywords:Multi-species test  Microalgae  Flow cytometry  Species interactions
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