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恶臭假单胞菌TQ07中参与氯冉酸(2,5-二氯-3,6-二羟基苯-1,4-醌)降解的黄素腺嘌呤二核苷酸单加氧酶基因(cadA)的克隆与特性分析

Cloning and characterization of a FAD-monooxygenase gene ( cadA) involved in degradation of chloranilic acid (2,5-dichloro-3,6-dihydroxybenzo-1,4-quinone) in Pseudomonas putida TQ07.

作者信息

Treviño-Quintanilla L G, Galán-Wong L J, Rodríguez-Uribe B, Soberón-Chávez G

机构信息

Departamento de Microbiología Molecular, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Postal 510-3, Cuernavaca, Morelos 62251, México.

出版信息

Appl Microbiol Biotechnol. 2002 Aug;59(4-5):545-50. doi: 10.1007/s00253-002-1040-6. Epub 2002 Jul 3.

Abstract

A bacterium culture was isolated on the basis of its ability to degrade chloranilic acid, and was later identified as Pseudomonas putida (TQ07). Several transposon insertion mutants unable to degrade chloranilic acid were selected. The characterization of the site of insertion of one of these mutants led to the identification of the cadA gene encoding an enzyme with significant homology with FAD-monooxygenases involved in the degradation of aromatic and chloroaromatic compounds. The finding that, after replacing the mutant allele with the wild-type one, the strain recovered the wild-type pattern of "halo" formation (a zone of clearing color on agar plates around TQ07 colonies that degrade chloranilic acid) and degradation of chloranilic acid, unequivocally assigned cadA a function in the metabolism of this compound. We also found that most of the transposon insertion mutants unable to degrade chloranilic acid are clustered in a 10-kb region of the P. putidagenome that is encoded in a megaplasmid or in an unstable chromosomal region.

摘要

基于其降解氯冉酸的能力分离出一种细菌培养物,随后将其鉴定为恶臭假单胞菌(TQ07)。选择了几个不能降解氯冉酸的转座子插入突变体。对其中一个突变体插入位点的表征导致鉴定出编码一种酶的cadA基因,该酶与参与芳香族和氯代芳香族化合物降解的FAD单加氧酶具有显著同源性。在用野生型等位基因替换突变等位基因后,该菌株恢复了野生型的“晕圈”形成模式(在琼脂平板上围绕降解氯冉酸的TQ07菌落的无色透明区域)和氯冉酸降解,这明确赋予了cadA在该化合物代谢中的功能。我们还发现,大多数不能降解氯冉酸的转座子插入突变体聚集在恶臭假单胞菌基因组的一个10 kb区域,该区域编码在一个大质粒或不稳定的染色体区域中。

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引用本文的文献

1
Molecular characterization of chloranilic acid degradation in Pseudomonas putida TQ07.
J Microbiol. 2011 Dec;49(6):974-80. doi: 10.1007/s12275-011-1507-1. Epub 2011 Dec 28.

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