Keystone microbial taxa organize micropollutant-related modules shaping the microbial community structure in estuarine sediments

The fluctuation of environmental conditions drives the structure of microbial communities in estuaries, highly dynamic ecosystems. Microorganisms inhabiting estuarine sediments play a key role in ecosystem functioning. They are well adapted to the changing conditions, also threatened by the presence...

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Veröffentlicht in:Journal of hazardous materials 2023-04, Vol.448, p.130858-130858, Article 130858
Hauptverfasser: Veloso, Sandrine, Amouroux, David, Lanceleur, Laurent, Cagnon, Christine, Monperrus, Mathilde, Deborde, Jonathan, Laureau, Cristiana Cravo, Duran, Robert
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Sprache:eng
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Zusammenfassung:The fluctuation of environmental conditions drives the structure of microbial communities in estuaries, highly dynamic ecosystems. Microorganisms inhabiting estuarine sediments play a key role in ecosystem functioning. They are well adapted to the changing conditions, also threatened by the presence of pollutants. In order to determine the environmental characteristics driving the organization of the microbial assemblages, we conducted a seasonal survey along the Adour Estuary (Bay of Biscay, France) using 16S rRNA gene Illumina sequencing. Microbial diversity data were combined with a set of chemical analyses targeting metals and pharmaceuticals. Microbial communities were largely dominated by Proteobacteria (41 %) and Bacteroidota (32 %), showing a strong organization according to season, with an important shift in winter. The composition of microbial communities showed spatial distribution according to three main areas (upstream, middle, and downstream estuary) revealing the influence of the Adour River. Further analyses indicated that the microbial community was influenced by biogeochemical parameters (Corg/Norg and δ13C) and micropollutants, including metals (As, Cu, Mn, Sn, Ti, and Zn) and pharmaceuticals (norfloxacin, oxolinic acid and trimethoprim). Network analysis revealed specific modules, organized around keystone taxa, linked to a pollutant type, providing information of paramount importance to understand the microbial ecology in estuarine ecosystems. [Display omitted] •Contamination hot spots were identified in urban area of the Adour Estuary.•The abundance of specific taxa was correlated with micropollutant concentrations.•Keystone taxa drive microbial networks according to micropollutant contents.•Nitrospira, keystone taxa in various conditions, might represents an ideal partner.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2023.130858