Quantitative PCR Monitoring of Antibiotic Resistance Genes and Bacterial Pathogens in Three European Artificial Groundwater Recharge Systems

Author:

Böckelmann Uta1,Dörries Hans-Henno1,Ayuso-Gabella M. Neus2,Salgot de Marçay Miquel2,Tandoi Valter3,Levantesi Caterina3,Masciopinto Costantino4,Van Houtte Emmanuel5,Szewzyk Ulrich1,Wintgens Thomas6,Grohmann Elisabeth1

Affiliation:

1. Department of Environmental Microbiology, Technical University Berlin, Franklinstr. 29, D-10587 Berlin, Germany

2. Unitat d'Edafologia, Facultat de Farmàcia, Universitat de Barcelona, Av. Joan XXIII, s/n, E-08028 Barcelona, Spain

3. Water Research Institute, CNR, Via Reno 1, 00198 Rome, Italy

4. Water Research Institute, CNR, Bari, Italy

5. Intermunicipal Water Company of the Veurne Region, Doornpannestraat 1, B-8670 Koksijde, Belgium

6. Institut für Verfahrenstechnik, RWTH Aachen, Turmstr. 46, D-52056 Aachen, Germany

Abstract

ABSTRACT Aquifer recharge presents advantages for integrated water management in the anthropic cycle, namely, advanced treatment of reclaimed water and additional dilution of pollutants due to mixing with natural groundwater. Nevertheless, this practice represents a health and environmental hazard because of the presence of pathogenic microorganisms and chemical contaminants. To assess the quality of water extracted from recharged aquifers, the groundwater recharge systems in Torreele, Belgium, Sabadell, Spain, and Nardò, Italy, were investigated for fecal-contamination indicators, bacterial pathogens, and antibiotic resistance genes over the period of 1 year. Real-time quantitative PCR assays for Helicobacter pylori, Yersinia enterocolitica , and Mycobacterium avium subsp. paratuberculosis , human pathogens with long-time survival capacity in water, and for the resistance genes ermB, mecA, blaSHV-5, ampC, tetO , and vanA were adapted or developed for water samples differing in pollutant content. The resistance genes and pathogen concentrations were determined at five or six sampling points for each recharge system. In drinking and irrigation water, none of the pathogens were detected. tetO and ermB were found frequently in reclaimed water from Sabadell and Nardò. mecA was detected only once in reclaimed water from Sabadell. The three aquifer recharge systems demonstrated different capacities for removal of fecal contaminators and antibiotic resistance genes. Ultrafiltration and reverse osmosis in the Torreele plant proved to be very efficient barriers for the elimination of both contaminant types, whereas aquifer passage followed by UV treatment and chlorination at Sabadell and the fractured and permeable aquifer at Nardò posed only partial barriers for bacterial contaminants.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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