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Biodegradation of mixtures of substituted benzenes by Pseudomonas sp. strain JS150.

机译:假单胞菌属物种对取代苯混合物的生物降解。菌株JS150。

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Pseudomonas sp. strain JS150 was isolated as a nonencapsulated variant of Pseudomonas sp. strain JS1 that contains the genes for the degradative pathways of a wide range of substituted aromatic compounds. Pseudomonas sp. strain JS150 grew on phenol, ethylbenzene, toluene, benzene, naphthalene, benzoate, p-hydroxybenzoate, salicylate, chlorobenzene, and several 1,4-dihalogenated benzenes. We designed experiments to determine the conditions required for induction of the individual pathways and to determine whether multiple substrates could be biodegraded simultaneously. Oxygen consumption studies with whole cells and enzyme assays with cell extracts showed that the enzymes of the meta, ortho, and modified ortho cleavage pathways can be induced in strain JS150. Strain JS150 contains a nonspecific toluene dioxygenase with a substrate range similar to that found in strains of Pseudomonas putida. The presence of the dioxygenase along with multiple pathways for metabolism of substituted catechols allows facile extension of the growth range by spontaneous mutation and degradation of mixtures of substituted benzenes and phenols. Chlorobenzene-grown cells of strain JS150 degraded mixtures of chlorobenzene, benzene, toluene, naphthalene, trichloroethylene, and 1,2- and 1,4-dichlorobenzenes in continuous culture. Under similar conditions, phenol-grown cells degraded a mixture of phenol, 2-chloro-, 3-chloro, and 2,5-dichlorophenol and 2-methyl- and 3-methylphenol. These results indicate that induction of appropriate biodegradative pathways in strain JS150 permits the biodegradation of complex mixtures of aromatic compounds.
机译:假单胞菌分离菌株JS150作为假单胞菌sp。的非封装变体。菌株JS1,其中包含多种取代的芳族化合物降解途径的基因。假单胞菌JS150菌株在苯酚,乙苯,甲苯,苯,萘,苯甲酸酯,对羟基苯甲酸酯,水杨酸酯,氯苯和几种1,4-二卤代苯上生长。我们设计了实验来确定诱导单个途径所需的条件,并确定是否可以同时对多种底物进行生物降解。用全细胞进行耗氧研究和用细胞提取物进行酶测定表明,在菌株JS150中可以诱导间位,邻位和修饰的邻位裂解途径的酶。菌株JS150包含一种非特异性甲苯双加氧酶,其底物范围与恶臭假单胞菌菌株中的底物范围相似。双加氧酶的存在以及取代的邻苯二酚代谢的多种途径使得通过自发突变和取代的苯和酚的混合物降解,可以容易地扩展生长范围。在连续培养中,菌株JS150的氯苯生长细胞降解了氯苯,苯,甲苯,萘,三氯乙烯以及1,2-和1,4-二氯苯的混合物。在相似的条件下,苯酚生长的细胞降解了苯酚,2-氯-,3-氯和2,5-二氯苯酚以及2-甲基和3-甲基苯酚的混合物。这些结果表明,菌株JS150中合适的生物降解途径的诱导允许芳族化合物的复杂混合物的生物降解。

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