Da Lat Nuclear Research Institute, 01 Nguyen Tu Luc, Da Lat 66106, Lam Dong, Vietnam.
Institute for Global Health Innovations, Duy Tan University, Da Nang 550000, Vietnam.
J Microbiol Biotechnol. 2024 Jan 28;34(1):56-64. doi: 10.4014/jmb.2308.08037. Epub 2023 Oct 26.
The widespread application of triazole fungicides (TFs) in agricultural practices can result in the considerable accumulation of active compound residues in the soil and a subsequent negative impact on the soil microbiota and crop health. In this study, we isolated three TF-degrading bacterial strains from contaminated agricultural soils and identified them as sp., sp., and sp. based on analysis of morphological characteristics and 16S rRNA gene sequences. The strains used three common TFs, namely hexaconazole, difenoconazole, and propiconazole, as their only sources of carbon and energy for growth in a liquid mineral salt medium, with high concentrations (~ 500 mg/l) of each TF. In addition to the ability to degrade fungicides, the isolates also exhibited plant growth-promoting characteristics, such as nitrogen fixation, indole acetic acid production, phosphate dissolution, and cellulose degradation. The synergistic combination of three bacterial isolates significantly improved plant growth and development with an increased survival rate (57%), and achieved TF degradation ranging from 85.83 to 96.59% at a concentration of approximately 50 mg/kg of each TF within 45 days in the soil-plant system. Based on these findings, the three strains and their microbial consortium show promise for application in biofertilizers, to improve soil health and facilitate optimal plant growth.
三唑类杀菌剂(TFs)在农业实践中的广泛应用可能导致土壤中活性化合物残留的大量积累,从而对土壤微生物区系和作物健康产生负面影响。在这项研究中,我们从受污染的农业土壤中分离出三株可降解 TF 的细菌菌株,并根据形态特征和 16S rRNA 基因序列分析将其鉴定为 sp.、 sp. 和 sp.。这些菌株使用三种常见的 TFs(即戊唑醇、氟环唑和丙环唑)作为其生长的唯一碳源和能源,在液体矿物盐培养基中每种 TF 的浓度高达约 500mg/L。除了降解杀菌剂的能力外,这些分离物还表现出植物促生长特性,如固氮、吲哚乙酸生产、磷酸盐溶解和纤维素降解。三种细菌分离物的协同组合显著改善了植物的生长和发育,存活率提高了 57%,并在 45 天内将土壤-植物系统中每种 TF 约 50mg/kg 的浓度下的 TF 降解率从 85.83%提高到 96.59%。基于这些发现,这三种菌株及其微生物联合体有望应用于生物肥料中,以改善土壤健康并促进植物的最佳生长。