Department of Microbiology, University of Alberta, Edmonton, Alberta, Canada T6G 2E9.
Appl Environ Microbiol. 1993 Jul;59(7):2229-38. doi: 10.1128/aem.59.7.2229-2238.1993.
Anaerobic sewage sludge was used to enrich a methanogenic m-cresol-degrading consortium. 6-Fluoro-3-methylphenol was synthesized and added to subcultures of the consortium with m-cresol. This caused the accumulation of 4-hydroxy-2-methylbenzoic acid. In a separate experiment, the addition of 3-fluorobenzoic acid caused the transient accumulation of 4-hydroxybenzoic acid. Inhibition with bromoethanesulfonic acid caused the accumulation of benzoic acid. Thus, the proposed degradation pathway was m-cresol --> 4-hydroxy-2-methylbenzoic acid --> 4-hydroxybenzoic acid --> benzoic acid. The m-cresol-degrading consortium was able to convert exogenous 4-hydroxybenzoic acid and benzoic acid to methane. In addition, for each metabolite of m-cresol identified, the corresponding fluorinated metabolite was detected, giving the following sequence: 6-fluoro-3-methylphenol --> 5-fluoro-4-hydroxy-2-methylbenzoic acid --> 3-fluoro-4-hydroxybenzoic acid --> 3-fluorobenzoic acid. The second step in each of these pathways is a novel demethylation which was rate limiting. This demethylation reaction would likely facilitate the transformation of the methyl group to methane, which is consistent with the results of a previous study that showed that the methyl carbon of m-[methyl-C]cresol was recovered predominantly as [C]methane (D. J. Roberts, P. M. Fedorak, and S. E. Hrudey, Can. J. Microbiol. 33:335-338, 1987). The final aromatic compound in the proposed route for m-cresol metabolism was benzoic acid, and its detection in these cultures merges the pathway for the methanogenic degradation of m-cresol with those for the anaerobic metabolism of many phenols.
厌氧污水污泥被用于富集产甲烷的间甲酚降解菌丛。合成了 6-氟-3-甲基苯酚,并将其添加到含有间甲酚的菌丛的亚培养物中。这导致 4-羟基-2-甲基苯甲酸的积累。在另一个实验中,添加 3-氟苯甲酸导致 4-羟基苯甲酸的瞬时积累。溴乙磺酸的抑制导致苯甲酸的积累。因此,提出的降解途径为间甲酚-> 4-羟基-2-甲基苯甲酸-> 4-羟基苯甲酸->苯甲酸。间甲酚降解菌丛能够将外源性 4-羟基苯甲酸和苯甲酸转化为甲烷。此外,对于鉴定出的每一种间甲酚代谢物,都检测到相应的氟化代谢物,其序列如下:6-氟-3-甲基苯酚-> 5-氟-4-羟基-2-甲基苯甲酸-> 3-氟-4-羟基苯甲酸-> 3-氟苯甲酸。这些途径中的第二步是一种新的脱甲基反应,该反应是限速的。这种脱甲基反应可能有助于将甲基转化为甲烷,这与先前的一项研究结果一致,该研究表明,间-[甲基-C]甲酚的甲基碳主要作为 [C]甲烷回收(D. J. Roberts、P. M. Fedorak 和 S. E. Hrudey,Can. J. Microbiol. 33:335-338, 1987)。所提出的间甲酚代谢途径中的最后一种芳香族化合物是苯甲酸,其在这些培养物中的检测将间甲酚的产甲烷降解途径与许多酚类的厌氧代谢途径融合在一起。