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反硝化细菌对甲苯和间二甲苯进行厌氧氧化的初始反应

Initial reactions in the anaerobic oxidation of toluene and m-xylene by denitrifying bacteria.

作者信息

Seyfried B, Glod G, Schocher R, Tschech A, Zeyer J

机构信息

Swiss Federal Institute of Technology, Institute of Terrestrial Ecology, Schlieren.

出版信息

Appl Environ Microbiol. 1994 Nov;60(11):4047-52. doi: 10.1128/aem.60.11.4047-4052.1994.

Abstract

Pseudomonas sp. strain T and Pseudomonas sp. strain K172 grow with toluene under denitrifying conditions. We demonstrated that anaerobic degradation of toluene was initiated by direct oxidation of the methyl group. Benzaldehyde and benzoate accumulated sequentially after toluene was added when cell suspensions were incubated at 5 degrees C. Strain T also grows anaerobically with m-xylene, and we demonstrated that degradation was initiated by oxidation of one methyl group. In cell suspensions incubated at 5 degrees C 3-methylbenzaldehyde and 3-methylbenzoate accumulated after m-xylene was added. Toluene- or m-xylene-grown strain T cells were induced to the same extent for oxidation of both hydrocarbons. In addition, the methyl group-oxidizing enzyme system of strain T also catalyzed the oxidation of each isomer of the chloro- and fluorotoluenes to the corresponding halogenated benzoate derivatives. In contrast, strain K172 only oxidized 4-fluorotoluene to 4-fluorobenzoate, probably because of the narrow substrate specificity of the methyl group-oxidizing enzymatic system. During anaerobic growth with toluene strains T and K172 produced two transformation products, benzylsuccinate and benzylfumarate. About 0.5% of the toluene carbon was converted to these products.

摘要

假单胞菌属菌株T和假单胞菌属菌株K172在反硝化条件下能利用甲苯生长。我们证明甲苯的厌氧降解是由甲基的直接氧化引发的。当细胞悬液在5℃下培养时,添加甲苯后苯甲醛和苯甲酸盐会依次积累。菌株T也能在厌氧条件下利用间二甲苯生长,并且我们证明其降解是由一个甲基的氧化引发的。在5℃下培养的细胞悬液中,添加间二甲苯后会积累3 - 甲基苯甲醛和3 - 甲基苯甲酸盐。以甲苯或间二甲苯生长的菌株T细胞对这两种碳氢化合物氧化的诱导程度相同。此外,菌株T的甲基氧化酶系统还催化氯甲苯和氟甲苯的各异构体氧化为相应的卤代苯甲酸衍生物。相比之下,菌株K172仅将4 - 氟甲苯氧化为4 - 氟苯甲酸盐,这可能是由于甲基氧化酶系统的底物特异性较窄。在以甲苯进行厌氧生长过程中,菌株T和K172产生了两种转化产物,苄基琥珀酸酯和苄基富马酸酯。约0.5%的甲苯碳被转化为这些产物。

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