4.5 Article

Presence of pharmaceuticals and bacterial resistance genes in river epilithic biofilms exposed to intense agricultural and urban pressure

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SPRINGER
DOI: 10.1007/s10661-022-10899-8

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Environmental pollution; Water quality; River monitoring; Bioaccumulation; Bioindicators; Effluent discards

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The study evaluated pharmaceutical contamination levels and the presence of resistance genes in biofilms from a South Brazilian watershed. Urban activities and intensive animal breeding were identified as important sources of contamination, with agricultural activities contributing through the transfer of pharmaceuticals from animal waste application. The most contaminated site was located in an urban area, and the quality of the biofilms served as a useful tool for environmental pollution monitoring.
The continuous discharge of pharmaceutical compounds into the aquatic environment has raised concerns over the contamination of water resources. Urban activities and intensive animal breeding are important sources of contamination. The accumulation of antibiotics may lead to the transfer or alternatively maintain the presence of resistance genes in natural microbial communities existing in epilithic biofilms. The objective of this study was to evaluate the pharmaceutical contamination levels and the presence of resistance genes in biofilms from a South Brazilian watershed. The Guapore watershed exhibits a high diversity of land use, including agricultural and urban areas with differing levels of anthropogenic pressure. Seventeen sites along the Guapore watershed were monitored. Biofilm samples were collected in two seasons (winter and summer), and the pharmaceutical concentration and quantity of resistance genes were analyzed. All monitored sites were contaminated with pharmaceuticals. Agricultural activities contribute through transferring pharmaceuticals derived from the application of animal waste to agricultural fields. The most contaminated site (pharmaceuticals and bacterial resistance genes) was located in an urban area exposed to high pressure. Decreases in the contamination of biofilms were also observed, exemplifying processes of natural attenuation in the watershed. The quality of the biofilms sampled throughout the watershed served as a useful tool to understand and monitor environmental pollution.

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