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白腐真菌云芝对三氯乙烯矿化的机制

Mechanistics of trichloroethylene mineralization by the white-rot fungus Trametes versicolor.

作者信息

Marco-Urrea Ernest, Parella Teodor, Gabarrell Xavier, Caminal Gloria, Vicent Teresa, Adinarayana Reddy C

机构信息

Departament d'Enginyeria Química and Institut de Ciència i Tecnologia Ambiental, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.

出版信息

Chemosphere. 2008 Jan;70(3):404-10. doi: 10.1016/j.chemosphere.2007.06.074. Epub 2007 Aug 13.

Abstract

The white-rot fungus Trametes versicolor degraded trichloroethylene (TCE), a highly oxidized chloroethene, and produced 2,2,2-trichloroethanol and carbon dioxide as the main products of degradation, based on the results obtained using [13C]-TCE as the substrate. For a range of concentrations of TCE between 2 and 20 mg l(-1), 53% of the theoretical maximum chloride expected from complete degradation of TCE was observed. Laccase was shown to be induced by TCE, but did not appear to play a role in TCE degradation. Cytochrome P-450 appears to be involved in TCE degradation, as evidenced by marked inhibition of degradation of TCE in the presence of 1-aminobenzotriazole, a known inhibitor of cytochrome P-450. Our results suggested that chloral (trichloroacetaldehyde) was an intermediate of the TCE degradation pathway. The results indicate that the TCE degradation pathway in T. versicolor appears to be similar to that previously reported in mammals and is mechanistically quite different from bacterial TCE degradation.

摘要

基于以[13C]-三氯乙烯(TCE)为底物所获得的结果,白腐真菌云芝能够降解高度氧化的氯乙烯——三氯乙烯(TCE),并产生2,2,2-三氯乙醇和二氧化碳作为主要降解产物。在2至20 mg l(-1)的一系列TCE浓度范围内,观察到了TCE完全降解预期的理论最大氯化物量的53%。结果表明,漆酶由TCE诱导产生,但似乎在TCE降解过程中不起作用。细胞色素P-450似乎参与了TCE的降解,这一点可通过在已知的细胞色素P-450抑制剂1-氨基苯并三唑存在的情况下TCE降解受到显著抑制得以证明。我们的结果表明,氯醛(三氯乙醛)是TCE降解途径的一个中间产物。结果表明,云芝中TCE的降解途径似乎与先前在哺乳动物中报道的相似,并且在机制上与细菌TCE降解有很大不同。

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