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Turkey Tail, Yun Zhi · 2013 · Journal Article

Low relevance

Degradation of lindane and endosulfan by fungi, fungal and bacterial laccases.

Trametes versicolor

OncologyImmune support
SpeciesTurkey Tail, Yun Zhi
JournalWorld journal of microbiology & biotechnology
Year2013

Key points

  • The ability of two white-rot fungi (Trametes versicolor and Pleurotus ostreatus) and one brown-rot fungus (Gloeophyllum trabeum) to degrade two organochlorine insecticides, lindane and endosulfan, in liquid cultures was studied and dead fungal biomass was examined for adsorption of both insecticides from liquid medium
  • Lindane and endosulfan were also treated with fungal laccase and bacterial protein CotA, which has laccase activities
  • The amount of degraded lindane and endosulfan increased with their exposure period in the liquid cultures of both examined white-rot fungi
  • Endosulfan was transformed to endosulfan sulphate by T. versicolor and P. ostreatus
  • Mycelial biomasses of all examined fungi have been found to adsorb lindane and endosulfan and adsorption onto fungal biomass should therefore be considered as a possible mechanism of pollutant removal when fungal degradation potentials are studied
  • Bacterial protein CotA performed more efficient degradation of lindane and endosulfan than fungal laccase and has shown potential for bioremediation of organic pollutants

Metadata-grounded summary

Citation abstract

The ability of two white-rot fungi (Trametes versicolor and Pleurotus ostreatus) and one brown-rot fungus (Gloeophyllum trabeum) to degrade two organochlorine insecticides, lindane and endosulfan, in liquid cultures was studied and dead fungal biomass was examined for adsorption of both insecticides from liquid medium. Lindane and endosulfan were also treated with fungal laccase and bacterial protein CotA, which has laccase activities. The amount of degraded lindane and endosulfan increased with their exposure period in the liquid cultures of both examined white-rot fungi. Endosulfan was transformed to endosulfan sulphate by T. versicolor and P. ostreatus. A small amount of endosulfan ether was also detected and its origin was examined. Degradation of lindane and endosulfan by a brown rot G. trabeum did not occur. Mycelial biomasses of all examined fungi have been found to adsorb lindane and endosulfan and adsorption onto fungal biomass should therefore be considered as a possible mechanism of pollutant removal when fungal degradation potentials are studied. Bacterial protein CotA performed more efficient degradation of lindane and endosulfan than fungal laccase and has shown potential for bioremediation of organic pollutants.

Citation

Ulčnik A, Kralj Cigić I, Pohleven F (2013). Degradation of lindane and endosulfan by fungi, fungal and bacterial laccases. World journal of microbiology & biotechnology https://doi.org/10.1007/s11274-013-1389-y PMID: 23736895

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