Doctoral School of Exact and Natural Sciences, Department of Industrial Microbiology and Biotechnology, Faculty of Biology and Environmental Protection, University of Lodz, Lodz, Poland.
Department of Industrial Microbiology and Biotechnology, Faculty of Biology and Environmental Protection, University of Lodz, Lodz, Poland.
Sci Rep. 2023 Sep 5;13(1):14618. doi: 10.1038/s41598-023-41210-5.
The amounts of anthropogenic pollutants, e.g., microplastics (MPs) and pesticides, in terrestrial and aquatic ecosystems have been increasing. The aim of this study was to assess the influence of MPs on the removal of herbicides (metolachlor, MET; 2,4-dichlorophenoxyacetic acid, 2,4-D) and the production of biosurfactants (surfactin and iturin) by Bacillus sp. Kol L6 active against Fusarium culmorum. The results showed that Kol L6 eliminated 40-55% MET and 2,4-D from liquid cultures, but this process was inhibited in the presence of MPs. Although the pollutants did not strongly limit the production of surfactin, iturin secretion was found to decrease by more than 70% in the presence of all three pollutants. Interestingly, the strongest modification in the profile of iturin homologues was calculated for the cultures containing MET + MP and 2,4-D + MET + MP. The bacteria significantly limited the growth of the phytopathogenic F. culmorum DSM1094F in the presence of individual pollutants and their two-component mixtures. However, in the presence of all three tested pollutants, the growth of the fungus was limited only partially (by no more than 40%). The presented results are a starting point for further research on bacteria-fungi-plants interactions in the soil environment in the presence of multiple pollutants.
人为污染物(例如微塑料 (MPs) 和农药)在陆地和水生生态系统中的含量一直在增加。本研究旨在评估 MPs 对枯草芽孢杆菌 Kol L6 去除除草剂(甲草胺、MET;2,4-二氯苯氧乙酸,2,4-D)和生物表面活性剂(表面活性剂和伊枯草菌素)产生的影响。该生物对镰刀菌属具有活性。结果表明,Kol L6 从液体培养物中去除了 40-55%的 MET 和 2,4-D,但在 MPs 存在的情况下,该过程受到抑制。尽管污染物并没有强烈限制表面活性剂的产生,但发现伊枯草菌素的分泌在所有三种污染物存在的情况下减少了 70%以上。有趣的是,在含有 MET+MP 和 2,4-D+MET+MP 的培养物中,伊枯草菌素类似物的图谱发生了最强的变化。在单独存在污染物及其两种成分混合物的情况下,细菌显著限制了植物病原菌 F. culmorum DSM1094F 的生长。然而,在存在所有三种测试污染物的情况下,真菌的生长仅受到部分限制(不超过 40%)。提出的结果是进一步研究土壤环境中多种污染物存在下细菌-真菌-植物相互作用的起点。