Książek-Trela Paulina, Figura Damian, Węzka Dominika, Szpyrka Ewa
Department of Biotechnology, Institute of Biotechnology, University of Rzeszow 1 Pigonia St., 35-310 Rzeszow, Poland.
Open Life Sci. 2024 Feb 5;19(1):20220831. doi: 10.1515/biol-2022-0831. eCollection 2024.
The study focused on the contribution of effective microorganisms (EM) and their consortia, used in commercial biological preparations and formulations for soil revitalization, to the degradation of a mixture of 13 polycyclic aromatic hydrocarbons (PAHs) commonly found in the soil environment. PAHs, diverse forms of which are present in the environment, never occur individually but always as a part of a chemical mixture. Therefore, the research presented in this article, focusing on the EM impact on the mixture of PAHs, reflects the conditions most similar to natural ones. On Day 35 of the experiment, PAH levels decreased by 75.5-95.5%. The highest PAHs degradation efficiency was achieved for fluorene, with a preparation containing eight bacteria strains from the genus: and . All tested preparations containing bacterial consortia and a preparation with the yeast intensified the PAHs degradation more effectively than formulations including only the yeast or a mixture of and . The designed and proposed research will contribute to the development of biotechnological methods - bioremediation by microorganisms that are safe for the human and environment health.
该研究聚焦于有效微生物(EM)及其菌群在用于土壤修复的商业生物制剂和配方中的作用,这些制剂和配方对土壤环境中常见的13种多环芳烃(PAH)混合物的降解情况。环境中存在多种形式的PAH,它们从不单独出现,而是总是作为化学混合物的一部分。因此,本文所呈现的研究聚焦于EM对PAH混合物的影响,反映了与自然条件最相似的情况。在实验的第35天,PAH水平下降了75.5 - 95.5%。芴的PAH降解效率最高,一种含有来自属的8种细菌菌株的制剂对其降解效果显著。所有测试的含细菌菌群的制剂以及一种含酵母的制剂,比仅含酵母或酵母与混合物的配方更有效地强化了PAH的降解。所设计和提出的研究将有助于开发对人类和环境健康安全的微生物生物技术修复方法。