Ecotoxicological assessment of soil contaminated by military operations using earthworms Eisenia fetida

  • S. V. Khyzhnyak National University of Life and Environmental Sciences of Ukraine
  • V. I. Korniyenko National University of Life and Environmental Sciences of Ukraine
  • O. P. Samkova National University of Life and Environmental Sciences of Ukraine
  • S. V. Midyk National University of Life and Environmental Sciences of Ukraine
  • O. M. Iakubchak National University of Life and Environmental Sciences of Ukraine
Keywords: military actions, combined pollution, biotesting, terrestrial ecotoxicology, soil biota, biomarkers, fatty acids.

Abstract

A reas of s oil cover of agricultural lands in Mykolaiv region , d egraded due to military operations and characterized by complex pollution, were examined for ecotoxicity. Soil biotesting, according to ISO standards, was conducted under laboratory conditions (14-day exposure) using earthworms Eisenia fetida . High toxicity of the experimental (degraded) soil with respect to E . fetida (100% mortality of organisms) was established. However, with a twofold reduction in the proportion of contaminated soil in the earthworms' habitat, this index wa s reduced by approximately half. It is shown that possible effects of soil contamination, which disrupt the vital functions of earthworms, are accompanied by a redistribution of fatty acids (FAs) content of their total lipids. FAs analysis was performed on a Trace GC Ultra gas chromatograph with a Flame Ionization Detector, which a l lowed the identification of 19 fatty acids in the worms' body. A decrease in the content of unsaturated FAs by 24.3%, in particular monounsaturated FAs, mainly due to oleic acid (C18:1ω9), was revealed as a result of the impact of soil contamination on eart h worms. In addition, an increase in the content of saturated FAs by 55.7%, especially such important FAs as palmitic acid (C16:0) by 53.7% and stearic acid (C18:0) by 50.1%, was detected, which may lead to structural and functional changes in cell me m branes. An important fact is the decrease in the content of polyene FAs of the ω6 family, in particular arachidonic acid (C20:4ω6) by 39.2% and the ω3 family, which are involved in the regulation of a wide range of physiological processes. The reorganization of the profile of lipid FAs of E . fetida can be considered as an early marker of metabolic changes in the earthworm body. The obtained results contribute to the objective assessment of the ecotoxicological consequences of soil damage as a result of military operations and contribute to an effective strat e gy for managing contaminated areas of agricultural land.

References

Certini, G., Scalenghe, R., & Woods, W. I. (2013). The impact of warfare on the soil environment. Earth-Science Reviews, 127, 1–15.

Chaika, Т., & Korotkova, І. (2023). Napryami ta tekhnologii vidtvorennya rodyochosti hryntiv v Ukraini v pislyavoennii period [Directions and technologies of restoring soil fertility in the post-war period in Ukraine]. Agrobiologiya, 1, 142–156 (in Ukrainian).

Dmytrukha, N. M., Kozlov, K. P., & Herasimova, O. V. (2024). Soil contamination with heavy metals: A hygienic concern. Ukrainian Journal of Occupational Health, 20(1), 66–75 (in Ukrainian).

Fayiga, A. O. (2019). Remediation of inorganic and organic contaminants in military ranges. Environmental Chemistry, 16, 81–91.

Fourie, F., Reinecke, S. A., & Reinecke, A. J. (2007). The determination of earthworm species sensitivity differences to cadmium genotoxicity using the comet assay. Ecotoxicology and Environmental Safety, 67(3), 361–368.

Gunya, B., Masika, P. J., Hugo, A., & Muchenje, V. (2016). Nutrient composition and fatty acid profiles of en-dried and freeze-dried earthworm Eisenia foetida. Journal of Food and Nutrition Research, 4(6), 343–348.

Hanyan, Z., Xingzhong, Y., Xiong, T., Hou, W., & Longbo, J. (2020) Bioremediation of co-contaminated soil with heavy metals and pesticides: Influence factors, mechanisms and evaluation methods. Chemical Engineering Journal, 398, 125657.

Hill, F. C., Sviatenko, L. K., Gorb, L., Okovytyy, S. I., Blaustein, G. S., & Leszczynski, J. (2012). DFT M06-2X investigation of alkaline hydrolysis of nitroaromatic compounds. Chemosphere, 88(5), 635–643.

Khyzhnyak, S. V., Midyk, S. V., Polishchuk, S. V., & Velinskaya, A. O. (2022). Effect of combined fungicide treatments on fatty acid content in Eisenia fetida earthworms. Spanish Journal of Agricultural Research, 40(4), e03SC01.

Khyzhnyak, S. V., Samkova, O. P., & Voitsitskiy, V. M. (2025a). Мethods of control of chemical environmental pollutants. In: Theoretical and applied aspects of sustainable development of Ukrainian regions. Baltija Publishing, Riga. Volume 1. Pp. 337–372.

Khyznyak, S. V., Korniyenko, V. I., Samkova, O. P., Midyk, S. V., Koversun, I. V., & Voitsitskiy, V. M. (2025b). Osnovni pidhody dlia kompleksnoyi ocinky zabrudnennia hruntiv vnaslidok viyskovykh diy [Basic approaches for comprehensive assessment of soil pollution resulting from military actions]. Ecological Sciences, 5(62), 189–194 (in Ukrainian).

Morrison, D. E., Robertson, B. K., & Alexander, M. (2000). Bioavailability to earthworms of aged DDT, DDE, DDD, and dieldrin in soil. Environmental Sciences and Technologies, 34, 709–713.

Paustenbach, D. (2015). Human and ecological risk assessment: Theory and Practice. Wiley, Hoboken.

Perona, J. S., Arcemis, C., Ruiz-Gutierrez, V., & Catala, A. (2005). Effect of dietary high-oleic-acid oils that are rich in antioxidants on microsomal lipid peroxidation in rats. Journal Agricultural and Food Chemistry, 53(3), 730–735.

Pueyo, M., Lopez-Sanchez, J. F., & Rauret, G. (2004). Assessment of CaCl2, NaNO3 and NH4NO3 extraction procedures for the study of Cd, Cu, Pb, and Zn extractability in contaminated soils. Analytica Chimica Acta, 504, 217–226.

Sakun, A. O., & Kutkovy, D. O. (2025). Otsinka vplyvu naslidkiv viys’kovykh diy na hrunty [Assessment of the impact of military actions on soils]. Ecological Sciences, 58, 350–353 (in Ukrainian).

Schnug, L., Leinaas, H. P., & Jensen, J. (2014). Synergistic sub-lethal effects of a biocide mixture on the springtail Folsomia fimetaria. Environmental Pollution, 186, 158–164.

Shukla, S., Mbingwa, G., Khanna, S., Dalal, J., Sankhyan, D., Malik, A., & Badhwar, N. (2023). Environment and health hazards due to military metal pollution: A review. Environmental Nanotechnology, Monitoring and Management, 20, 100857.

Simopolos, A. I., & Cleland, L. G. (2003). Omega-6/omega-3 essential fatty acid ration: The scientific evidence. “The importance of Omega-6/Omega-3 fatty acid ration in cell function”. World Review of Nutrition and Dietetics, 92, 23–36.

Singh, K., & Fatima, N. (2022). The efficiency of earthworms as a biomarker for environmental pollution. International Journal of Biological Innovations, 4(1), 104–112.

Skalny, A. V., Aschner, M., Bobrovnitsky, I. P., Chen, Р., Tsatsakis, A., Paolielo, M. M. B., Djordevic, A. B., & Tinkov, А. А. (2021). Environmental and health hazards of military metal pollution. Environmental Research, 201, 111568.

Song, Y., Zhu, L. S., Wang, J., Wang, J. H., Liu, W., & Xie, H. (2009). DNA damage and effects on antioxidative enzymes in earthworm (Eisenia foetida) induced by atrazine. Soil Biology and Biochemistry, 41(5), 905–909.

Uwizeyimana, Н., Wang, M., Chen, W., & Khan, K. (2017) The eco-toxic effects of pesticide and heavy metal mixtures towards earthworms in soil. Environmental Toxicology and Pharmacology. 55, 20–29.

Wang, Y. H., Wu, S. G., Chen, L. P., Wu, C. X., Yu, R. X., Wang, Q., & Zhao, X. P. (2012). Toxicity assessment of 45 pesticides to the epigeic earthworm Eisenia fetida. Chemosphere, 88(4), 484–491.

Wieczorek, J., & Baran, A. (2022). Pollution indices and biotests as useful tools for the evaluation of the degree of soil contamination by trace elements. Journal of Soils and Sediments, 22, 559–576.

Ye, X. Q., Xiong, K., & Liu, J. (2016). Comparative toxicity and bioaccumulation of fenvalerate and esfenvalerate to earthworm Eisenia fetida. Journal of Hazardous Materials, 310, 82–88.

Zulfiharov, A. O., Artamonov, M. S., & Zulfiharov, O. S. (2023). Khimiya vibukhovikh rechovin: Biorozkladannya nitroaromatichnikh spoluk [Chemistry of explosives: Biodegradation of nitro-aromatic compounds]. One Health and Nutrition Problems of Ukraine, 2, 48–61 (in Ukrainian).

Published
2026-05-13
How to Cite
Khyzhnyak, S. V., Korniyenko, V. I., Samkova, O. P., Midyk, S. V., & Iakubchak, O. M. (2026). Ecotoxicological assessment of soil contaminated by military operations using earthworms Eisenia fetida. Regulatory Mechanisms in Biosystems, 17(3), e26072. https://doi.org/10.15421/0226072

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