Published March 2018 | Version v1
Journal article

Microplastics increase impact of treated wastewater on freshwater microbial community

  • 1. Microbial Ecology Group (MEG), National Research Council - Institute of Ecosystem Study (CNR-ISE), Largo Tonolli, 50, 28922 Verbania (Italy)
  • 2. Department of Earth, Environmental and Life Sciences (DISTAV), University of Genoa, Corso Europa 26, 16132 Genoa (Italy)
  • 3. Potsdam University, Inst. of Biochemistry and Biology, Maulbeerallee 2, D-14469 Potsdam (Germany)
  • 4. Leibniz Institute of Freshwater Ecology and Inland Fisheries (IGB), Dept. Experimental Limnology, Alte Fischerhuette 2, D-16775 Stechlin (Germany)
  • 5. Central American Institute for Studies on Toxic Substances (IRET), Universidad Nacional, Campus Omar Dengo, P.O. Box 86-3000, Heredia (Costa Rica)

Description

Highlights: • Increasing microplastic concentrations lead to a higher frequency integrase 1. • Bacterial community pattern on microplastic resembles freshwater and waste water. • Similarity of bacterial community to waste water increases with increasing microplastic. Plastic pollution is a major global concern with several million microplastic particles entering every day freshwater ecosystems via wastewater discharge. Microplastic particles stimulate biofilm formation (plastisphere) throughout the water column and have the potential to affect microbial community structure if they accumulate in pelagic waters, especially enhancing the proliferation of biohazardous bacteria. To test this scenario, we simulated the inflow of treated wastewater into a temperate lake using a continuous culture system with a gradient of concentration of microplastic particles. We followed the effect of microplastics on the microbial community structure and on the occurrence of integrase 1 (int1), a marker associated with mobile genetic elements known as a proxy for anthropogenic effects on the spread of antimicrobial resistance genes. The abundance of int1 increased in the plastisphere with increasing microplastic particle concentration, but not in the water surrounding the microplastic particles. Likewise, the microbial community on microplastic was more similar to the original wastewater community with increasing microplastic concentrations. Our results show that microplastic particles indeed promote persistence of typical indicators of microbial anthropogenic pollution in natural waters, and substantiate that their removal from treated wastewater should be prioritised.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.envpol.2017.11.070

Additional details

Identifiers

DOI
10.1016/j.envpol.2017.11.070;
PII
S0269749117339775;

Publishing Information

Journal Title
Environmental Pollution (1987)
Journal Volume
234
Journal Page Range
p. 495-502
ISSN
0269-7491
CODEN
ENPOEK

Optional Information

Copyright
Copyright (c) 2017 Elsevier Ltd. All rights reserved.