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恶臭假单胞菌中苯酚降解的调控

Regulation of phenol degradation in Pseudomonas putida.

作者信息

Janke D, Pohl R, Fritsche W

出版信息

Z Allg Mikrobiol. 1981;21(4):295-303. doi: 10.1002/jobm.3630210405.

Abstract

In order to characterize the ability of Pseudomonas putida (TREVISAN 1889) MIGULA 1895 strain H to degrade various mono- and diphenolic aromatic compounds, respiratory activities towards phenol, catechol, and the cresol isomers were determined. The following rates of oxygen uptake (QO2) were obtained with resting phenol-grown cells: phenol -- 229, o-cresol -- 231, m-cresol -- 43, p-cresol -- 200, catechol -- 262. All these compounds were oxidized by a two-phase-kinetics, the first phase is characterized by a higher oxidation rate than the second. The oxidation of phenol as well as of p-cresol was found to be substrate-inhibited at concentrations above 0.25 mM. A Ki-value of 100 mg/l was calculated for phenol oxidation. The phenol-degrading enzyme system is induced, probably coordinately, by phenol and the cresol isomers. In strain H the degradation of phenol is carried out simultaneously with the assimilation of natural carbohydrates like glucose and sodium pyruvate. Aniline as well as sodium benzoate, though not metabolized by strain H, cause a concentration-dependent inhibition of phenol degradation in resting phenol-grown cells of that strain. The mechanism of this inhibition is discussed.

摘要

为了表征恶臭假单胞菌(TREVISAN 1889)MIGULA 1895菌株H降解各种单酚和双酚芳香化合物的能力,测定了其对苯酚、邻苯二酚和甲酚异构体的呼吸活性。用静止的以苯酚为生长底物的细胞获得了以下氧摄取速率(QO2):苯酚——229,邻甲酚——231,间甲酚——43,对甲酚——200,邻苯二酚——262。所有这些化合物均通过两相动力学被氧化,第一相的特征是氧化速率高于第二相。发现苯酚以及对甲酚在浓度高于0.25 mM时被底物抑制。计算出苯酚氧化的Ki值为100 mg/l。苯酚降解酶系统可能由苯酚和甲酚异构体协同诱导。在菌株H中,苯酚的降解与天然碳水化合物如葡萄糖和丙酮酸钠的同化同时进行。苯胺以及苯甲酸钠虽然不能被菌株H代谢,但会对该菌株静止的以苯酚为生长底物的细胞中的苯酚降解产生浓度依赖性抑制。讨论了这种抑制的机制。

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