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Assessment of trace element contamination and effects on Paracentrotus lividus using several approaches: pollution indices, accumulation factors and biochemical tools
El Idrissi, O.; Ternengo, S.; Monnier, B.; Lepoint, G.; Aiello, A.; Bastien, R.; Lourkisti, R.; Bonnin, M.; Santini, J.; Pasqualini, V.; Gobert, S. (2023). Assessment of trace element contamination and effects on Paracentrotus lividus using several approaches: pollution indices, accumulation factors and biochemical tools. Sci. Total Environ. 869: 161686. https://dx.doi.org/10.1016/j.scitotenv.2023.161686
In: Science of the Total Environment. Elsevier: Amsterdam. ISSN 0048-9697; e-ISSN 1879-1026, more
Peer reviewed article  

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Keywords
    Paracentrotus lividus (Lamarck, 1816) [WoRMS]
    Marine/Coastal
Author keywords
    Paracentrotus lividus; Asbestos mine; Trace Element Pollution Index;Bioaccumulation; Biomagnification; Oxidative stress

Authors  Top 
  • El Idrissi, O., more
  • Ternengo, S.
  • Monnier, B.
  • Lepoint, G., more
  • Aiello, A.
  • Bastien, R.
  • Lourkisti, R.
  • Bonnin, M.
  • Santini, J.
  • Pasqualini, V.
  • Gobert, S., more

Abstract
    Among the most common contaminants in marine ecosystems, trace elements are recognized as serious pollutants. In Corsica (NW Mediterranean Sea), near the old asbestos mine at Canari, trace elements from the leaching of mine res-idues have been discharged into the sea for several decades. The aim of this study was to assess the levels of contam-ination in this area and the potential effects on Paracentrotus lividus (Lamarck, 1816) using pollution indices, accumulation factors and biochemical tools. For this purpose, the concentration of 24 trace elements was measured in sea urchins (gonads and gut content), macroalgae, seawater column and sediment collected at 12 stations nearby the old asbestos mine and at a reference site. The bioaccumulation of trace elements occurs as follows: macroalgae > gut > gonads. TEPI contribute to highlight contamination gradients which are mainly due to the dominant marine currents allowing the migration of mining waste along the coastline. This hypothesis was supported by TESVI, which identified characteristic trace elements in the southern area of the mine. High hydrogen peroxide content, asso-ciated with elevated catalase and glutathione-S-transferase enzyme activities, were also identified at these sites and at the reference site. Trace elements contamination as well as several abiotic factors could explain these results (e.g. mi-crobiological contamination, hydrodynamic events, etc.). The results obtained in this study suggest that oxidative stress induced by contamination does not affect the health of Paracentrotus lividus. This work has provided a useful dataset allowing better use of sea urchins and various tools for assessing trace element contamination in coastal eco-systems.

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