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首页> 外文期刊>Applied and Environmental Microbiology >A Novel Transformation of Polychlorinated Biphenyls by Rhodococcus sp. Strain RHA1.
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A Novel Transformation of Polychlorinated Biphenyls by Rhodococcus sp. Strain RHA1.

机译:红球菌属一种新型的多氯联苯转化。菌株RHA1。

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We have characterized a biphenyl degrader, Rhodococcus sp. strain RHA1. Biphenyl-grown cells of strain RHA1 efficiently transformed 45 components in the 62 major peaks of a polychlorinated biphenyl (PCB) mixture of Kanechlors 200, 300, 400, and 500 within 3 days, which includes mono- to octachlorobiphenyls. Among the intermediate metabolites of PCB transformation, di- and trichlorobenzoic acids were identified. The gradual decrease of these chlorobenzoic acids during incubation indicated that these chlorobenzoic acids would also be degraded by this strain. The effect of the position of chlorine substitution was determined by using PCB mixtures that have chlorine substitutions mainly at either the ortho or the meta position. This strain transformed both types of congeners, and strong PCB transformation activity of RHA1 was indicated. RHA1 accumulated 4-chlorobenzoic acid temporally during the transformation of 4-chlorobiphenyl. The release of most chloride in the course of 2,2(prm1)-dichlorobiphenyl degradation was observed. These results suggested that RHA1 would break down at least some PCB congeners into smaller molecules to a considerable extent.
机译:我们已经表征了联苯降解菌Rhodococcus sp。菌株RHA1。菌株RHA1的联苯生长细胞在3天内有效地转化了Kanechlors 200、300、400和500的多氯联苯(PCB)混合物的62个主峰中的45个组分,其中包括单氯代至八氯代联苯。在PCB转化的中间代谢产物中,鉴定出二氯和三氯苯甲酸。这些氯苯甲酸在孵育过程中逐渐减少表明这些菌株也会降解这些氯苯甲酸。氯取代位置的影响是通过使用主要在邻位或间位具有氯取代作用的PCB混合物确定的。该菌株转化了两种类型的同源物,并表明了RHA1的强PCB转化活性。在4-氯联苯的转化过程中,RHA1暂时积累了4-氯苯甲酸。在2,2(prm1)-二氯联苯降解过程中观察到大多数氯化物的释放。这些结果表明,RHA1将在一定程度上将至少一些PCB同类物分解为较小的分子。

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