Published December 12, 2019 | Version v1
Journal article Open

Natural Microbial Communities Can Be Manipulated by Artificially Constructed Biofilms

  • 1. Department of Environmental Sciences Jožef Stefan Institute Jamova cesta 39, 1000 Ljubljana, Slovenia
  • 2. Systems and Synthetic Biology Chalmers University of Technology Kemivägen 10, 412 96 Göteborg, Sweden
  • 3. Systems Bioinformatics Faculty of Science Vrije Universiteit Amsterdam De Boelelaan 1105, 1081 HV Amsterdam, The Netherlands

Description

Biofouling proceeds in successive steps where the primary colonizers affect the phylogenetic and functional structure of a future microbial consortium. Using microbiologically influenced corrosion (MIC) as a study case, a novel approach for material surface protection is described, which does not prevent biofouling, but rather shapes the process of natural biofilm development to exclude MIC-related microorganisms. This approach interferes with the early steps of natural biofilm formation affecting how the community is finally developed. It is based on a multilayer artificial biofilm, composed of electrostatically modified bacterial cells, producing antimicrobial compounds, extracellular antimicrobial polyelectrolyte matrix, and a water-proof rubber elastomer barrier. The artificial biofilm is constructed layer-by-layer (LBL) by manipulating the electrostatic interactions between microbial cells and material surfaces. Field testing on standard steel coupons exposed in the sea for more than 30 days followed by laboratory analyses using molecularbiology tools demonstrate that the preapplied artificial biofilm affects the phylogenetic structure of the developing natural biofilm, reducing phylogenetic diversity and excluding MIC-related bacteria. This sustainable solution for material protection showcases the usefulness of artificially guiding microbial evolutionary processes via the electrostatic modification and controlled delivery of bacterial cells and extracellular matrix to the exposed material surfaces.

Notes

GREENERProjectH2020

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Funding

European Commission
GREENER - InteGRated systems for Effective ENvironmEntal Remediation 826312