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Ligninolytic fungus Polyporus sp. S133 mediated metabolic degradation of fluorene

Lazim, Z. M. and Hadibarata, T. (2016) Ligninolytic fungus Polyporus sp. S133 mediated metabolic degradation of fluorene. Brazilian Journal of Microbiology, 47 (3). pp. 610-616. ISSN 1517-8382

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Abstract

This study aimed to investigate the impact of nonionic surfactants on the efficacy of fluorine degradation by Polyporus sp. S133 in a liquid culture. Fluorene was observed to be degraded in its entirety by Polyporus sp. S133 subsequent to a 23-day incubation period. The fastest cell growth rate was observed in the initial 7 days in the culture that was supplemented with Tween 80. The degradation process was primarily modulated by the activity of two ligninolytic enzymes, laccase and MnP. The highest laccase activity was stimulated by the addition of Tween 80 (2443 U/L) followed by mixed surfactant (1766 U/L) and Brij 35 (1655 U/L). UV–vis spectroscopy, TLC analysis and mass spectrum analysis of samples subsequent to the degradation process in the culture medium confirmed the biotransformation of fluorene. Two metabolites, 9-fluorenol (λmax 270, tR 8.0 min and m/z 254) and protocatechuic acid (λmax 260, tR 11.3 min and m/z 370), were identified in the treated medium.

Item Type:Article
Uncontrolled Keywords:fluorene, fluorene derivative, pollutant, biomass, bioremediation, biotransformation, chemistry, enzymology, metabolism, metabolome, metabolomics, pollutant, Polyporus, procedures, solubility, Biodegradation, Environmental, Biomass, Biotransformation, Environmental Pollutants, Fluorenes, Metabolic Networks and Pathways, Metabolome, Metabolomics, Polyporus, Solubility
Subjects:T Technology > TA Engineering (General). Civil engineering (General)
Divisions:Civil Engineering
ID Code:72336
Deposited By: Narimah Nawil
Deposited On:20 Nov 2017 08:23
Last Modified:20 Nov 2017 08:23

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