Dissipation of pesticides by stream biofilms is influenced by hydrological histories

Author:

Bertrans-Tubau Lluís1ORCID,Menard Yoann2,Batisson Isabelle2,Creusot Nicolas3,Mazzella Nicolas3,Millan-Navarro Debora3,Moreira Aurélie3,Morin Soizic3,Ponsá Sergio1,Abril Meritxell1,Proia Lorenzo1,Romaní Anna M4,Artigas Joan2

Affiliation:

1. BETA Technological Centre- University of Vic-Central University of Catalunya (BETA-UVic-UCC) , Carretera de Roda 70, 08500 Vic, Barcelona , Spain

2. CNRS, Laboratoire Microorganismes: Génome et Environnement (LMGE) , Université Clermont Auvergne, Campus Universitaire des Cézeaux, 1 Impasse Amélie Murat. F-63000 Clermont-Ferrand , France

3. INRAE, UR EABX , 50 avenue de Verdun, F-33612 Cestas , France

4. Institute of Aquatic Ecology, University of Girona, Campus Montilivi, 17005 Girona , Spain

Abstract

AbstractTo evaluate the effects of hydrological variability on pesticide dissipation capacity by stream biofilms, we conducted a microcosm study. We exposed biofilms to short and frequent droughts (daily frequency), long and less frequent droughts (weekly frequency) and permanently immersed controls, prior to test their capacities to dissipate a cocktail of pesticides composed of tebuconazole, terbuthylazine, imidacloprid, glyphosate and its metabolite aminomethylphosphonic acid. A range of structural and functional descriptors of biofilms (algal and bacterial biomass, extracellular polymeric matrix (EPS) concentration, microbial respiration, phosphorus uptake and community-level physiological profiles) were measured to assess drought effects. In addition, various parameters were measured to characterise the dynamics of pesticide dissipation by biofilms in the different hydrological treatments (% dissipation, peak asymmetry, bioconcentration factor, among others). Results showed higher pesticide dissipation rates in biofilms exposed to short and frequent droughts, despite of their lower biomass and EPS concentration, compared to biofilms in immersed controls or exposed to long and less frequent droughts. High accumulation of hydrophobic pesticides (tebuconazole and terbuthylazine) was measured in biofilms despite the short exposure time (few minutes) in our open-flow microcosm approach. This research demonstrated the stream biofilms capacity to adsorb hydrophobic pesticides even in stressed drought environments.

Funder

Generalitat de Catalunya

Spanish Ministry of Science and Innovation

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Ecology,Microbiology

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