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Degradation of 1,2-dichlorobenzene by a Pseudomonas sp.

机译:通过假单胞菌SP降解1,2-二氯苯。

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A Pseudomonas sp. that was capable of growth on 1,2-dichlorobenzene (o-DCB) or chlorobenzene as a sole source of carbon and energy was isolated by selective enrichment from activated sludge. The initial steps involved in the degradation of o-DCB were investigated by isolation of metabolites, respirometry, and assay of enzymes in cell extracts. Extracts of o-DCB-grown cells converted radiolabeled o-DCB to 3,4-dichloro-cis-1,2-dihydroxycyclohexa-3,5-diene (o-DCB dihydrodiol). 3,4-Dichlorocatechol and o-DCB dihydrodiol accumulated in culture fluids of cells exposed to o-DCB. The results suggest that o-DCB is initially converted by a dioxygenase to a dihydrodiol, which is converted to 3,4-dichlorocatechol by an NAD+-dependent dehydrogenase. Ring cleavage of 3,4-dichlorocatechol is by a catechol 1,2-oxygenase to form 2,3-dichloro-cis,cis-muconate. Preliminary results indicate that chloride is eliminated during subsequent lactonization of the 2,3-dichloro-cis,cis-muconate, followed by hydrolysis to form 5-chloromaleylacetic acid.
机译:一个假单胞菌sp。通过从活性污泥中选择性富集,分离出1,2-二氯苯(O-DCB)或氯苯作为唯一的碳和能量来生长。通过分离细胞提取物中的代谢物,呼吸测定和测定来研究涉及O-DCB降解的初始步骤。将o-DCB生长的细胞的提取物转化了放射性标记的O-DCB至3,4-二氯-CIS-1,2-二羟基环醇己基-3,5-二烯(O-DCB二氢醇)。在暴露于O-DCB的细胞的培养物中积聚的3,4-二氯替肽和O-DCB二氢醇。结果表明,O-DCB最初由二氧化酶转化为二氢醇,其通过NAD +依赖性脱氢酶转化为3,4-二氯替肽。 3,4-二氯集套的环裂解是通过儿茶酚1,2-氧酶形成2,3-二氯-CIS,顺式粘液酸酯。初步结果表明,在随后的2,3-二氯-CIS,CIS-粘液酸酯,随后进行水解以形成5-氯芳基乙酸的氯化物。

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