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The roles of biological interactions and pollutant contamination in shaping microbial benthic community structure
Authors:Hela Louati  Olfa Ben Said  Amel Soltani  Patrice Got  Ezzeddine Mahmoudi  Cristiana Cravo-Laureau  Robert Duran  Patricia Aissa  Olivier Pringault
Affiliation:1. Laboratoire de Biosurveillance de l’Environnement, Faculté des Sciences de Bizerte, 7021 Zarzouna, Tunisia;2. Equipe Environnement et Microbiologie, UMR CNRS IPREM 5254, IBEAS, Université de Pau et des Pays de l’Adour, France;3. Laboratoire Ecosystèmes Marins Côtiers, UMR 5119 CNRS-UM2-IFREMER-IRD-ECOSYM, Université Montpellier 2, France
Abstract:
Biological interactions between metazoans and the microbial community play a major role in structuring food webs in aquatic sediments. Pollutants can also strongly affect the structure of meiofauna and microbial communities. This study aims investigating, in a non-contaminated sediment, the impact of meiofauna on bacteria facing contamination by a mixture of three PAHs (fluoranthene, phenanthrene and pyrene). Sediment microcosms were incubated in the presence or absence of meiofauna during 30 days. Bioremediation treatments, nutrient amendment and addition of a hydrocarbon-degrading bacterium, were also tested to enhance PAH biodegradation. Results clearly show the important role of meiofauna as structuring factor for bacterial communities with significant changes observed in the molecular fingerprints. However, these structural changes were not concomitant with changes in biomass or function. PAH contamination had a severe impact on total meiofaunal abundance with a strong decrease of nematodes and the complete disappearance of polychaetes and copepods. In contrast, correspondence analysis, based on T-RFLP fingerprints, showed that contamination by PAH resulted in small shifts in microbial composition, with or without meiofauna, suggesting a relative tolerance of bacteria to the PAH cocktail. The PAH bioremediation treatments were highly efficient with more than 95% biodegradation. No significant difference was observed in presence or absence of meiofauna. Nutrient addition strongly enhanced bacterial and meiofaunal abundances as compared to control and contaminated microcosms, as well as inducing important changes in the bacterial community structure. Nutrients thus were the main structural factor in shaping bacterial community composition, while the role of meiofauna was less evident.
Keywords:Meiofauna   Bacteria   Bioremediation   PAH-degraders   Microcosms   Bizerte lagoon
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