Hickey W J, Focht D D
Department of Soil and Environmental Science, University of California, Riverside 92521.
Appl Environ Microbiol. 1990 Dec;56(12):3842-50. doi: 10.1128/aem.56.12.3842-3850.1990.
Pseudomonas aeruginosa JB2 was isolated from a polychlorinated biphenyl-contaminated soil by enrichment culture containing 2-chlorobenzoate as the sole carbon source. Strain JB2 was subsequently found also to grow on 3-chlorobenzoate, 2,3- and 2,5-dichlorobenzoates, 2,3,5-trichlorobenzoate, and a wide range of other mono- and dihalogenated benzoic acids. Cometabolism of 2,4-dichlorobenzoate was also observed. Chlorocatechols were the central intermediates of all chlorobenzoate catabolic pathways. Degradation of 2-chlorobenzoate was routed through 3-chlorocatechol, whereas 4-chlorocatechol was identified from the metabolism of both 2,3- and 2,5-dichlorobenzoate. The initial attack on chlorobenzoates was oxygen dependent and most likely mediated by dioxygenases. Although plasmids were not detected in strain JB2, spontaneous mutants were detected in 70% of glycerol-grown colonies. The mutants were all of the following phenotype: benzoate+, 3-chlorobenzoate+, 2-chlorobenzoate-, 2,3-dichlorobenzoate-, 2,5-dichlorobenzoate-. While chlorocatechols were oxidized by the mutants at wild-type levels, oxidation of 2-chloro- and 2,3- and 2,5-dichlorobenzoates was substantially diminished. These findings suggested that strain JB2 possessed, in addition to the benzoate dioxygenase, a halobenzoate dioxygenase that was necessary for the degradation of chlorobenzoates substituted in the ortho position.
铜绿假单胞菌JB2是从受多氯联苯污染的土壤中通过以2 - 氯苯甲酸作为唯一碳源的富集培养分离得到的。随后发现菌株JB2也能在3 - 氯苯甲酸、2,3 - 和2,5 - 二氯苯甲酸、2,3,5 - 三氯苯甲酸以及多种其他单卤代和二卤代苯甲酸上生长。还观察到了2,4 - 二氯苯甲酸的共代谢。氯儿茶酚是所有氯苯甲酸分解代谢途径的中心中间体。2 - 氯苯甲酸的降解途径是通过3 - 氯儿茶酚,而从2,3 - 和2,5 - 二氯苯甲酸的代谢中鉴定出了4 - 氯儿茶酚。对氯苯甲酸的初始攻击依赖于氧气,很可能是由双加氧酶介导的。虽然在菌株JB2中未检测到质粒,但在70%的甘油培养菌落中检测到了自发突变体。这些突变体均具有以下表型:苯甲酸盐阳性、3 - 氯苯甲酸盐阳性、2 - 氯苯甲酸盐阴性、2,3 - 二氯苯甲酸盐阴性、2,5 - 二氯苯甲酸盐阴性。虽然氯儿茶酚在野生型水平被突变体氧化,但2 - 氯、2,3 - 和2,5 - 二氯苯甲酸的氧化则显著减少。这些发现表明,除了苯甲酸双加氧酶外,菌株JB2还拥有一种卤代苯甲酸双加氧酶,这对于邻位取代的氯苯甲酸的降解是必需的。