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短孢射脉菌对有毒多氯联苯的真菌生物转化作用

Fungal bioconversion of toxic polychlorinated biphenyls by white-rot fungus, Phlebia brevispora.

作者信息

Kamei Ichiro, Sonoki Shigenori, Haraguchi Koichi, Kondo Ryuichiro

机构信息

Department of Forest and Forest Products Sciences, Faculty of Agriculture, Kyushu University, 6-10-1 Hakozaki, 812-8581 Higashi-ku, Fukuoka, Japan.

出版信息

Appl Microbiol Biotechnol. 2006 Dec;73(4):932-40. doi: 10.1007/s00253-006-0529-9. Epub 2006 Jul 22.

Abstract

Toxic coplanar polychlorinated biphenyls (Co-PCBs) were used as substrates for a degradation experiment with white-rot fungus, Phlebia brevispora TMIC33929, which is capable of degrading polychlorinated dibenzo-p-dioxins. Eleven PCB congener mixtures (7 mono-ortho- and 4 non-ortho-PCBs) were added to the cultures of P. brevispora and monitored by high resolution gas chromatography and mass spectrometry (HRGC/HRMS). Five PCB congeners, 3,3',4,4'-tetrachlorobiphenyl, 2,3,3',4,4'-pentachlorobiphenyl, 2,3',4,4',5-pentachlorobiphenyl, 3,3',4,4',5-pentachlorobiphenyl, and 2,3',4,4',5,5'-hexachlorobiphenyl were degraded by P. brevispora. To investigate the fungal metabolism of PCB, each Co-PCB was treated separately by P. brevispora and the metabolites were analyzed by gas chromatography and mass spectrometry (GC/MS) and identified on the basis of the GC/MS comparison with the authentic compound. Meta-methoxylated metabolite was detected from the culture containing each compound. Additionally, para-dechlorinated and -methoxylated metabolite was also detected from the culture with 2,3,3',4,4'-pentachlorobiphenyl, 2,3',4,4',5-pentachlorobiphenyl, and 2,3',4,4',5,5'-hexachlorobiphenyl, which are mono-ortho-PCBs. In this paper, we identified the congener specific degradation of coplanar PCBs by P. brevispora, and clearly proved for the first time by identifying the metabolites that the white-rot fungus, P. brevispora, transformed recalcitrant coplanar PCBs.

摘要

毒性共面多氯联苯(Co-PCBs)被用作白腐真菌短孢射脉菌TMIC33929降解实验的底物,该真菌能够降解多氯代二苯并对二噁英。将11种多氯联苯同系物混合物(7种单邻位和4种非邻位多氯联苯)添加到短孢射脉菌培养物中,并通过高分辨率气相色谱和质谱(HRGC/HRMS)进行监测。短孢射脉菌降解了5种多氯联苯同系物,即3,3',4,4'-四氯联苯、2,3,3',4,4'-五氯联苯、2,3',4,4',5-五氯联苯、3,3',4,4',5-五氯联苯和2,3',4,4',5,5'-六氯联苯。为了研究多氯联苯的真菌代谢,每种Co-PCB分别用短孢射脉菌处理,代谢产物通过气相色谱和质谱(GC/MS)分析,并根据与标准化合物的GC/MS比较进行鉴定。从含有每种化合物的培养物中检测到间位甲氧基化代谢产物。此外,从含有2,3,3',4,4'-五氯联苯、2,3',4,4',5-五氯联苯和2,3',4,4',5,5'-六氯联苯(均为单邻位多氯联苯)的培养物中还检测到对位脱氯和甲氧基化代谢产物。在本文中,我们确定了短孢射脉菌对共面多氯联苯的同系物特异性降解,并通过鉴定代谢产物首次明确证明白腐真菌短孢射脉菌能够转化难降解的共面多氯联苯。

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