[Degradation of fluorene and fluoranthene by the basidiomycete Pleurotus ostreatus].

N N Pozdnyakova, M P Chernyshova, V S Grinev, E O Landesman, O V Koroleva, O V Turkovskaya
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Abstract

The dependence of the degree of fluorene and fluoranthene degradation by the fungus Pleurotus ostreatus D1 on the culture medium composition has been studied. Polycyclic aromatic hydrocarbons (PAHs) have been transformed in Kirk’s medium (under conditions of laccase production) with the formation of a quinone metabolite and 9-fluorenone upon the use of fluoranthene and fluorene as substrates, respectively. More complete degradation with the formation of an intermediate metabolite, phthalic acid that has undergone subsequent utilization, has occurred in basidiomycete-rich medium (under the production of both laccase and versatile peroxidase). The formation of phthalic acid as a metabolite of fluoranthene degradation by lignolytic fungi has been revealed for the first time. The data allow the supposition that both extracellular laccase and laccase on the mycelium surface can participate in the initial stages of PAH metabolism, while versatile peroxidase is necessary for the oxidation of the formed metabolites. A scheme of fluorene metabolism by Pleurotus ostreatus D1 is suggested.

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[担子菌平菇对芴和氟蒽的降解]。
研究了平菇(Pleurotus ostreatus D1)对芴的降解程度与培养基组成的关系。多环芳烃(PAHs)在柯克培养基中(在漆酶生产条件下)转化,分别以氟蒽和芴为底物,形成醌代谢物和9-芴酮。在富含担子菌的培养基中(在漆酶和多功能过氧化物酶的共同作用下),随着中间代谢物邻苯二甲酸的形成,发生了更彻底的降解。本文首次揭示了木质素降解真菌降解荧光蒽的代谢产物邻苯二甲酸的形成。这些数据允许假设细胞外漆酶和菌丝表面漆酶都可以参与多环芳烃代谢的初始阶段,而多功能过氧化物酶对于形成的代谢产物的氧化是必需的。提出了平菇(Pleurotus ostreatus D1)对芴的代谢方案。
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