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The Role of Grass Compost and Zea Mays in Alleviating Toxic Effects of Tetracycline on the Soil Bacteria Community

Author

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  • Jadwiga Wyszkowska

    (Department of Soil Science and Microbiology, University of Warmia and Mazury in Olsztyn, 10-727 Olsztyn, Poland)

  • Agata Borowik

    (Department of Soil Science and Microbiology, University of Warmia and Mazury in Olsztyn, 10-727 Olsztyn, Poland)

  • Jan Kucharski

    (Department of Soil Science and Microbiology, University of Warmia and Mazury in Olsztyn, 10-727 Olsztyn, Poland)

Abstract

Given their common use for disease treatment in humans, and particularly in animals, antibiotics pose an exceptionally serious threat to the soil environment. This study aimed to determine the response of soil bacteria and oxidoreductases to a tetracycline (Tc) contamination, and to establish the usability of grass compost (G) and Zea mays (Zm) in mitigating adverse Tc effects on selected microbial properties of the soil. The scope of microbiological analyses included determinations of bacteria with the conventional culture method and new-generation sequencing method (NGS). Activities of soil dehydrogenases and catalase were determined as well. Tc was found to reduce counts of organotrophic bacteria and actinobacteria in the soils as well as the activity of soil oxidoreductases. Soil fertilization with grass compost (G) and Zea mays (Zm) cultivation was found to alleviate the adverse effects of tetracycline on the mentioned group of bacteria and activity of oxidoreductases. The metagenomic analysis demonstrated that the bacteria belonging to Acidiobacteria and Proteobacteria phyla were found to prevail in the soil samples. The study results recommend soil fertilization with G and Zm cultivation as successful measures in the bioremediation of tetracycline-contaminated soils and indicate the usability of the so-called core bacteria in the bioaugmentation of such soils.

Suggested Citation

  • Jadwiga Wyszkowska & Agata Borowik & Jan Kucharski, 2022. "The Role of Grass Compost and Zea Mays in Alleviating Toxic Effects of Tetracycline on the Soil Bacteria Community," IJERPH, MDPI, vol. 19(12), pages 1-26, June.
  • Handle: RePEc:gam:jijerp:v:19:y:2022:i:12:p:7357-:d:839638
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    References listed on IDEAS

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    1. Agata Borowik & Jadwiga Wyszkowska & Mirosław Kucharski & Jan Kucharski, 2019. "Implications of Soil Pollution with Diesel Oil and BP Petroleum with ACTIVE Technology for Soil Health," IJERPH, MDPI, vol. 16(14), pages 1-21, July.
    2. Amit Kumar & Amit Kumar & Cabral-Pinto M.M.S. & Ashish K. Chaturvedi & Aftab A. Shabnam & Gangavarapu Subrahmanyam & Raju Mondal & Dipak Kumar Gupta & Sandeep K. Malyan & Smita S. Kumar & Shakeel A. K, 2020. "Lead Toxicity: Health Hazards, Influence on Food Chain, and Sustainable Remediation Approaches," IJERPH, MDPI, vol. 17(7), pages 1-33, March.
    3. Arnab Bhowmik & Surinder Singh Kukal & Debasish Saha & Harmandeep Sharma & Anu Kalia & Sandeep Sharma, 2019. "Potential Indicators of Soil Health Degradation in Different Land Use-Based Ecosystems in the Shiwaliks of Northwestern India," Sustainability, MDPI, vol. 11(14), pages 1-17, July.
    4. Tereza Hammerschmiedt & Jiri Holatko & Jiri Kucerik & Adnan Mustafa & Maja Radziemska & Antonin Kintl & Ondrej Malicek & Tivadar Baltazar & Oldrich Latal & Martin Brtnicky, 2022. "Manure Maturation with Biochar: Effects on Plant Biomass, Manure Quality and Soil Microbiological Characteristics," Agriculture, MDPI, vol. 12(3), pages 1-17, February.
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    Cited by:

    1. Małgorzata Baćmaga & Jadwiga Wyszkowska & Agata Borowik & Jan Kucharski, 2024. "Effect of Previous Crop on the Structure of Bacterial and Fungal Communities during the Growth of Vicia faba L. spp. minor," Agriculture, MDPI, vol. 14(3), pages 1-25, February.
    2. Agata Borowik & Jadwiga Wyszkowska & Magdalena Zaborowska & Jan Kucharski, 2024. "Soil Enzyme Response and Calorific Value of Zea mays Used for the Phytoremediation of Soils Contaminated with Diesel Oil," Energies, MDPI, vol. 17(11), pages 1-22, May.

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