Using meiobenthic taxa, nematofauna biological traits, and bacterial abundance to assess the effects of the polybrominated diphenyl ethers compound: Case study of tetrabromo diphenyl ether BDE-47

Trophic web structuring in aquatic sediments is dependent on the biological interactions between metazoans and microbial communities. The presence of pollutants in these biotas can therefore impact the meiofauna structure via the modification of the microbial communities. The current study examined...

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Veröffentlicht in:The Science of the total environment 2021-05, Vol.770, p.145251, Article 145251
Hauptverfasser: Nasri, Ahmed, Hannachi, Amel, Allouche, Mohamed, Barhoumi, Badreddine, Barkaoui, Taha, Wahbi, Aymen, D'Agostino, Fabio, Mahmoudi, Ezzeddine, Beyrem, Hamouda, Boufahja, Fehmi
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Sprache:eng
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Zusammenfassung:Trophic web structuring in aquatic sediments is dependent on the biological interactions between metazoans and microbial communities. The presence of pollutants in these biotas can therefore impact the meiofauna structure via the modification of the microbial communities. The current study examined in a laboratory bioassay the response of meiobenthic communities, particularly marine nematode taxa from the Bizerte Lagoon to the effect of the most detected polybrominated diphenyl ether in this aquatic environment, BDE-47. Four doses [D1 (2.5 ppb Dry weight (DW)), D2 (25 ppb DW), D3 (50 ppb DW), and D4 (100 ppb DW)] were gradually applied and sediment microcosms were incubated for 30 days in the presence or absence of meiofauna. Our results show that BDE-47-enriched sediments decreased the meiofaunal taxa and bacterial abundance. A lower taxonomic diversity of the nematodes' general structure was observed with all doses used. The numerical analysis of the two dimensional (2D) non-metric multidimensional scaling (nMDS) plots and the evolution of the relative abundances of each functional group of nematode genus assemblages revealed that the abundance of all biological traits was modified. Nevertheless, only three of the functional traits, adult length, feeding group, and amphid shape, showed a clear difference between the control and the treated microcosms. The similarity percentage analysis (SIMPER) revealed that the average dissimilarity between nematode genera communities and biological traits increased with BDE-47-enriched sediments. The nMDS second-stage ordination of inter-matrix rank correlations for matrices including genera and biological traits showed that the amphid shape was the functional trait closest to the generic distribution. Finally, the Principal Component Analysis (PCA) for the nematode biological traits and bacteria indicated a positive correlation of these microbes with the functional groups [1A, Cr, and ef], and a negative correlation only with the “cla”-type tail shape. [Display omitted] •BDE-47 presented a high persistence and adsorption capacity in aquatic sediments.•BDE-47 decrease the abundance of meiobenthic taxa and bacteria.•BDE-47 exposure decreases the nematodes genera taxonomic diversity.•BDE-47 exposure modifies nematode biological traits abundance.•A positive correlation between nematodes biological traits and bacteria were recorded.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2021.145251