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Ecotoxicological effects of sediments from Mar Piccolo,South Italy: toxicity testing with organisms from different trophic levels
Authors:Elisa Costa  Veronica Piazza  Chiara Gambardella  Roberto Moresco  Ermelinda Prato  Francesca Biandolino  Daniele Cassin  Margherita Botter  Daniela Maurizio  Raffaele D’Adamo  Adele Fabbrocini  Marco Faimali  Francesca Garaventa
Institution:1.CNR- Institute of Marine Sciences (ISMAR),Venezia,Italy;2.CNR– Institute of Marine Science (ISMAR),Genova,Italy;3.Costa Edutainment S.p.A., Acquario di Genova,Genova,Italy;4.CNR – Institute for Coastal Marine Environment (IAMC),Taranto,Italy;5.CNR – Institute of Marine Science (ISMAR),Lesina,Italy
Abstract:The Mar Piccolo of Taranto (Ionian Sea, Southern Italy) is a semi-enclosed and strongly polluted basin. For decades, it has been subjected to different anthropogenic impacts. These stressors caused severe sediments contamination with high concentration of different pollutants (PAHs, PCB, heavy metals). In order to assess the current status of sediments contamination, an ecotoxicological investigation combined with chemical analysis (heavy metals, PAH, and PCB) has been performed. In order to derive ecologically relevant conclusions, a multiorganisms and multiend-points approach has been applied, exposing organisms from different trophic levels to elutriate and whole sediment. The battery of bioassays consists of a microalgal growth inhibition test (Dunaliella tertiolecta), acute and sublethal assays (end-points: mortality, immobilization and swimming speed alteration) on crustaceans larvae and juveniles, and rotifers (Amphibalanus amphitrite, Artemia salina, Corophium insidiosum and Brachionus plicatilis), and embryotoxicity test on echinoderms (Paracentrotus lividus). Considering the high levels of sediment contamination highlighted from chemical analysis, an unexpected very low toxic effect was observed, even considering the sublethal end-point (larval swimming speed alteration). The results of this study suggest a very complex contaminants dynamic in the Mar Piccolo sediments that, despite a strong level of contamination, seems to not affect in a proportional manner the biological compartment.
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