Microbial Diversity and Enzyme Activity as Indicators of Permethrin-Exposed Soil Health

Author:

Borowik Agata1ORCID,Wyszkowska Jadwiga1ORCID,Zaborowska Magdalena1ORCID,Kucharski Jan1ORCID

Affiliation:

1. Department of Soil Science and Microbiology, Faculty of Agriculture and Forestry, University of Warmia and Mazury in Olsztyn, 10-719 Olsztyn, Poland

Abstract

Owing to their wide range of applications in the control of ticks and insects in horticulture, forestry, agriculture and food production, pyrethroids pose a significant threat to the environment, including a risk to human health. Hence, it is extremely important to gain a sound understanding of the response of plants and changes in the soil microbiome induced by permethrin. The purpose of this study has been to show the diversity of microorganisms, activity of soil enzymes and growth of Zea mays following the application of permethrin. This article presents the results of the identification of microorganisms with the NGS sequencing method, and of isolated colonies of microorganisms on selective microbiological substrates. Furthermore, the activity of several soil enzymes, such as dehydrogenases (Deh), urease (Ure), catalase (Cat), acid phosphatase (Pac), alkaline phosphatase (Pal), β-glucosidase (Glu) and arylsulfatase (Aryl), as well as the growth of Zea mays and its greenness indicators (SPAD), after 60 days of growth following the application of permethrin, were presented. The research results indicate that permethrin does not have a negative effect on the growth of plants. The metagenomic studies showed that the application of permethrin increases the abundance of Proteobacteria, but decreases the counts of Actinobacteria and Ascomycota. The application of permethrin raised to the highest degree the abundance of bacteria of the genera Cellulomonas, Kaistobacter, Pseudomonas, Rhodanobacter and fungi of the genera Penicillium, Humicola, Iodophanus, Meyerozyma. It has been determined that permethrin stimulates the multiplication of organotrophic bacteria and actinomycetes, decreases the counts of fungi and depresses the activity of all soil enzymes in unseeded soil. Zea mays is able to mitigate the effect of permethrin and can therefore be used as an effective phytoremediation plant.

Funder

University of Warmia and Mazury in Olsztyn, Faculty of Agriculture and Forestry, Department of Soil Science and Microbiology

Minister of Education and Science

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference92 articles.

1. International Union of Soil Sciences (IUSS) (2023, April 04). International Decade of Soils (IDS) 2015–2024. Bulletin 2022, 141. Available online: https://www.iuss.org/.

2. USDA NRCS (United States Department of Agriculture, Natural Resources Conservation Service) (2023, April 04). NRCS: Washington, DC, USA, Available online: http://www.nrcs.usda.gov/.

3. Beneficial Bacteria of Agricultural Importance;Babalola;Biotechnol. Lett.,2010

4. Seneviratne, G., and Zavahir, J.S. (2021). Role of Microbial Communities for Sustainability, Springer. Microorganisms for Sustainability.

5. Johns, C. (2023, April 04). Living Soils: The Role of Microorganisms in Soil Health. Future Directions International, Independent Strategic Analysis of Australia’s Global Interests 2017. Available online: https://apo.org.au/sites/default/files/resource-files/2017-06/apo-nid96931.pdf.

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