Biochemical activity of soil contaminated with BPS, bioaugmented with a mould fungi consortium and a bacteria consortium

Environ Sci Pollut Res Int. 2019 Dec;26(36):37054-37069. doi: 10.1007/s11356-019-06875-4. Epub 2019 Nov 19.

Abstract

This study analysed the scale of bisphenol S (BPS) toxicity to the soil biochemical activity and is part of a wider effort to find solutions to restore the global soil environment balance, including elimination of the effects of ecosystem pollution with BPA, of which BPS is a significant analogue. However, since there has been no research on the effect of BPS on soil health, the objective of the study was pursued based on increasing the levels of soil contamination with the bisphenol 0, 5, 50 and 500 mg BPS kg-1 DM of soil and by observing the response of seven soil enzymes: dehydrogenases, catalase, urease, acid phosphatase, alkaline phosphatase, arylsulphatase and β-glucosidase to the growing BPS pressure. The potential negative effect of bisphenol S was offset by bioaugmentation with a bacteria consortium-Pseudomonas umsongensis, Bacillus mycoides, Bacillus weihenstephanensis and Bacillus subtilis-and a fungi consortium Mucor circinelloides, Penicillium daleae, Penicillium chrysogenum and Aspergillus niger. BPS was found to be a significant inhibitor of the soil enzymatic activity and, in consequence, its fertility. Dehydrogenases and acid phosphatase proved to be the most susceptible to BPS pressure. Bioaugmentation with a bacteria consortium offset the negative effect of 500 mg BPS kg-1 DM of soil by inducing an increase in the activity of acid phosphatase and alkaline phosphatase, whereas the fungi consortium stimulated the activity of β-glucosidase and acid phosphatase. A spectacular dimension of bisphenol S inhibition corresponded with both the spring rape above-ground parts and root development disorders and the content of Ca and K in them. The BPS level in soil on day 5 of the experiment decreased by 61% and by another 19% on day 60.

Keywords: BPS; Bacterial consortium; Bioaugmentation; Mould fungi consortium; Soil enzymes.

MeSH terms

  • Arylsulfatases
  • Bacteria / drug effects
  • Benzhydryl Compounds
  • Biodegradation, Environmental*
  • Ecosystem
  • Environmental Pollution / analysis
  • Fungi / drug effects
  • Microbial Consortia*
  • Oxidoreductases
  • Phenols / analysis*
  • Phenols / toxicity
  • Soil / chemistry
  • Soil Microbiology*
  • Soil Pollutants / analysis*
  • Soil Pollutants / toxicity
  • Sulfones / analysis*
  • Sulfones / toxicity
  • Urease / analysis

Substances

  • Benzhydryl Compounds
  • Phenols
  • Soil
  • Soil Pollutants
  • Sulfones
  • bis(4-hydroxyphenyl)sulfone
  • Oxidoreductases
  • Arylsulfatases
  • Urease
  • bisphenol A