Contrasted effects of natural complex mixtures of PAHs and metals on oxygen cycle in a microbial mat

•Microbial mats were exposed to natural mixtures of PAHs and metals.•Primary production and respiration were strongly inhibited in spring.•Respiration and primary production were not significantly impacted in autumn.•More than 50% of dissimilarity between spring and autumn microbial mat communities....

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Veröffentlicht in:Chemosphere (Oxford) 2015-09, Vol.135, p.189-201
Hauptverfasser: Pringault, Olivier, Aube, Johanne, Bouchez, Olivier, Klopp, Christophe, Mariette, Jérome, Escudie, Frédéric, Senin, Pavel, Goni-Urriza, Marisol
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Sprache:eng
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Zusammenfassung:•Microbial mats were exposed to natural mixtures of PAHs and metals.•Primary production and respiration were strongly inhibited in spring.•Respiration and primary production were not significantly impacted in autumn.•More than 50% of dissimilarity between spring and autumn microbial mat communities.•The differences observed might be explained by contaminant bioavailability and mat maturation. The contamination of polluted environments is often due to a complex mixture of pollutants sometimes at trace levels which nevertheless may have significant effects on the diversity and functioning of organisms. The aim of this study was to assess the functional responses of a microbial mat exposed to a natural complex mixture of PAHs and metals as a function of the maturation stage of the biofilm. Microbial mats sampled in a slightly polluted environment were exposed to contaminated water of a retention basin of an oil refinery. The responses of the microbial mats differed according to season. In spring 2012, strong inhibition of both oxygen production and respiration was observed relative to the control, with rates representing less than 5% of the control after 72h of incubation. A decrease of microbial activities was followed by a decrease of the coupling between autotrophs and heterotrophs. In contrast, in autumn 2012, no significant changes for oxygen production and respiration were observed and the coupling between autotrophs and heterotrophs was not altered. The differences observed between the spring and autumn mats might be explained by the maturity of the microbial mat with dominance of heterotrophic bacteria in spring, and diatoms and cyanobacteria in autumn, as well as by the differences in the chemical composition of the complex mixture of PAHs and metals.
ISSN:0045-6535
1879-1298
DOI:10.1016/j.chemosphere.2015.04.037