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Updated: Sep 12, 2026

Microtiter Dish Biofilm Formation Assay
Published on: January 30, 2011
Biofilm formation in drinking water affected by low concentrations of phosphorus
Markku J Lehtola1, Ilkka T Miettinen, Pertti J Martikainen
1Department of Environmental Health, National Public Health Institute, Kuopio, Finland. Markku.Lehtola@ktl.fi
Abstract:
Abstract: There are geographical regions where microbial growth in drinking waters is limited by phosphorus instead of organic carbon. In these drinking waters even a low amount of phosphorus can strongly enhance microbial growth. The formation of biofilm can be limited by low availability of phosphorus in drinking waters with low content of phosphorus. The formation of biofilms on polyvinyl chloride plates was studied in laboratory experiments with water containing 48 microg/L assimilable organic carbon and 0.19 microg/L microbially available phosphorus. We found that low additions of phosphate (1-5 microg/L PO4(3-)-P) to water increased microbial growth in the water and in the biofilm. The effect of phosphorus on microbial growth could be detected by determining either the microbial cell production or the content of ATP in biofilms. Also, in steady-state biofilms, microbial concentrations were higher with phosphorus addition as enumerated by heterotrophic plate counts on R2A-agar and acridine orange direct counting. This work confirms the earlier findings of the importance of phosphorus for microbial growth in humic-rich drinking waters.
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