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Degradation of Triazole Fungicides by Plant Growth-Promoting Bacteria from Contaminated Agricultural Soil

Thi Tham Luong, Thi Hong Tham Nguyen, Tien Dat Nguyen, Le Van Toan, Thi Hong Trang Pham, Thanh-Tam Ho, Ngoc‐Loi Nguyen

2023Journal of Microbiology and Biotechnology14 citationsDOIOpen Access PDF

Abstract

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.

Topics & Concepts

BiofertilizerFungicideNitrogen fixationBiologyPropiconazolePseudomonasSoil microbiologyBacteriaChemistryAgronomyEnvironmental chemistryFood scienceGeneticsPesticide and Herbicide Environmental StudiesPlant-Microbe Interactions and ImmunityPharmaceutical and Antibiotic Environmental Impacts