Bisaillon J G, Lépine F, Beaudet R, Sylvestre M
Centre de recherche en microbiologie appliquée, Ville de Laval, Canada.
Can J Microbiol. 1993 Jul;39(7):642-8. doi: 10.1139/m93-093.
An anaerobic consortium that carboxylated and dehydroxylated phenol to benzoate, and 2-cresol to 3-methylbenzoic acid, under methanogenic conditions was studied. Phenol induced this transformation activity. Addition of 4-hydroxypyridine or an increase in the concentration of proteose peptone to 0.5% (w/v) delayed the transformation. Phenol enhanced the rate of transformation of 2-cresol whereas 2-cresol delayed the transformation of phenol. Phenols with ortho-substitutions (chloro-, fluoro-, bromo-, hydroxyl-, amino-, or carboxyl-) were transformed to meta-substituted benzoic acids. However, meta- and para-substituted phenols (cresols, fluorophenols, and chlorophenols) were not transformed. Phenol was most rapidly metabolized, followed by catechol, 2-cresol, 2-fluorophenol, 2-aminophenol, 2-chlorophenol, 2-hydroxybenzoic acid, and 2-bromophenol. The consortium O-demethylated anisole to phenol and 2-methoxyphenol to catechol, and oxidized 2-hydroxybenzyl alcohol to 2-hydroxybenzoic acid. Aniline, 2-ethylphenol, 2-hydroxypyridine, 2-acetamidophenol, 2,6-dimethylphenol, 2-phenylphenol, and 1-naphthol were not metabolized.
对一个厌氧菌群进行了研究,该菌群在产甲烷条件下可将苯酚羧化并脱羟基生成苯甲酸,将2-甲酚转化为3-甲基苯甲酸。苯酚可诱导这种转化活性。添加4-羟基吡啶或将蛋白胨浓度提高到0.5%(w/v)会延迟转化。苯酚提高了2-甲酚的转化速率,而2-甲酚则延迟了苯酚的转化。带有邻位取代基(氯、氟、溴、羟基、氨基或羧基)的酚类被转化为间位取代的苯甲酸。然而,间位和对位取代的酚类(甲酚、氟酚和氯酚)未被转化。苯酚代谢最快,其次是邻苯二酚、2-甲酚、2-氟苯酚、2-氨基苯酚、2-氯苯酚、2-羟基苯甲酸和2-溴苯酚。该菌群将苯甲醚O-去甲基化生成苯酚,将2-甲氧基苯酚转化为邻苯二酚,并将2-羟基苄醇氧化为2-羟基苯甲酸。苯胺、2-乙基苯酚、2-羟基吡啶、2-乙酰氨基苯酚、2,6-二甲基苯酚、2-苯基苯酚和1-萘酚未被代谢。