Turkey Tail, Yun Zhi · 2018 · Journal Article
Medium relevanceLindane dissipation in a biomixture: Effect of soil properties and bioaugmentation.
Trametes versicolor
Key points
- Besides, bioaugmentation is an interesting approach for the optimization of these systems
- A2, A5, A11, and M7, was designed to inoculate the biomixtures, based on previously demonstrated ligninolytic and pesticide-degrading activities and the absence of antagonism among the strains
- The presence of lindane and/or the inoculum in the biomixtures had no significant effect on the development of culturable microorganisms regardless the soil type
- The consortium improved lindane dissipation achieving 81-87% of removal at 66 d of incubation in the different biomixtures, decreasing lindane half-life to an average of 24 d, i.e. 6-fold less than t 1/2 of lindane in soils
- However, after recontamination, only the bioaugmented biomixture of silty loam soil enhanced lindane dissipation and decreased the t 1/2 compared to non-bioaugmented
- The biomixture formulated with silty loam soil, sugarcane bagasse, and peat, inoculated with a fungal-actinobacterial consortium, could be appropriate for the treatment of agroindustrial effluents contaminated with organochlorine pesticides in biopurification systems
Metadata-grounded summary
Citation abstract
The biomixture is the major constituent of a biopurification system and one of the most important factors in its efficiency; hence the selection of the components is crucial to ensure the efficient pesticides removal. Besides, bioaugmentation is an interesting approach for the optimization of these systems. A mixed culture of the fungus Trametes versicolor SGNG1 and the actinobacteria Streptomyces sp. A2, A5, A11, and M7, was designed to inoculate the biomixtures, based on previously demonstrated ligninolytic and pesticide-degrading activities and the absence of antagonism among the strains. The presence of lindane and/or the inoculum in the biomixtures had no significant effect on the development of culturable microorganisms regardless the soil type. The consortium improved lindane dissipation achieving 81-87% of removal at 66 d of incubation in the different biomixtures, decreasing lindane half-life to an average of 24 d, i.e. 6-fold less than t 1/2 of lindane in soils. However, after recontamination, only the bioaugmented biomixture of silty loam soil enhanced lindane dissipation and decreased the t 1/2 compared to non-bioaugmented. The biomixture formulated with silty loam soil, sugarcane bagasse, and peat, inoculated with a fungal-actinobacterial consortium, could be appropriate for the treatment of agroindustrial effluents contaminated with organochlorine pesticides in biopurification systems.
Citation
Saez JM, Bigliardo AL, Raimondo EE, Briceño GE, Polti MA, Benimeli CS (2018). Lindane dissipation in a biomixture: Effect of soil properties and bioaugmentation. Ecotoxicology and environmental safety https://doi.org/10.1016/j.ecoenv.2018.03.011 PMID: 29533212
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