4.7 Article

Effects of the antibiotic enrofloxacin on the ecology of tropical eutrophic freshwater microcosms

Journal

AQUATIC TOXICOLOGY
Volume 147, Issue -, Pages 92-104

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.aquatox.2013.12.008

Keywords

Antibiotics; Enrofloxacin; Microcosms; Ecological risk assessment; Tropics

Funding

  1. EU [222889, 282004]
  2. Strategic Research Fund of the WIMEK graduate school

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The main objective of the present study was to assess the ecological impacts of the fluoroquinolone antibiotic enrofloxacin on the structure and functioning of tropical freshwater ecosystems. Enrofloxacin was applied at a concentration of 1, 10, 100 and 1000 mu g/L for 7 consecutive days in 600-L outdoor microcosms in Thailand. The ecosystem-level effects of enrofloxacin were monitored on five structural (macroinvertebrates, zooplankton, phytoplankton, periphyton and bacteria) and two functional (organic matter decomposition and nitrogen cycling) endpoint groups for 4 weeks after the last antibiotic application. Enrofloxacin was found to dissipate relatively fast from the water column (half-dissipation time: 11.7 h), and about 11% of the applied dose was transformed into its main by-product ciprofloxacin after 24 h. Consistent treatment-related effects on the invertebrate and primary producer communities and on organic matter decomposition could not be demonstrated. Enrofloxacin significantly affected the structure of leaf-associated bacterial communities at the highest treatment level, and reduced the abundance of ammonia-oxidizing bacteria and ammonia-oxidizing archaea in the sediments, with calculated NOECs of 10 and <1 mu g/L, respectively. The ammonia concentration in the microcosm water significantly increased in the highest treatment level, and nitrate production was decreased, indicating a potential impairment of the nitrification function at concentrations above 100 mu g/L. The results of this study suggest that environmentally relevant concentrations of enrofloxacin are not likely to result in direct or indirect toxic effects on the invertebrate and primary producer communities, nor on important microbially mediated functions such as nitrification. (C) 2014 Elsevier B.V. All rights reserved.

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