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耐苯型不透明红球菌菌株的分离与鉴定

Isolation and characterization of benzene-tolerant Rhodococcus opacus strains.

作者信息

Na Kyung-Su, Kuroda Akio, Takiguchi Noboru, Ikeda Tsukasa, Ohtake Hisao, Kato Junichi

机构信息

Department of Molecular Biotechnology, Graduate School of Advanced Sciences of Matter, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8530, Japan.

出版信息

J Biosci Bioeng. 2005 Apr;99(4):378-82. doi: 10.1263/jbb.99.378.

Abstract

Twenty-two benzene-utilizing bacteria were isolated from soil samples. Among them, three isolates were highly tolerant to benzene. They grew on benzene when liquid benzene was added to the basal salt medium at 10--90% (v/v). Taxonomical analysis identified the benzene-tolerant isolates as Rhodococcus opacus. One of the benzene-tolerant isolates, designated B-4, could utilize many aromatic and aliphatic hydrocarbons including benzene, toluene, styrene, xylene, ethylbenzene, propylbenzene, n-octane and n-decane as sole sources of carbon and energy. Strain B-4 grew well in the presence of 10% (v/v) organic solvents that it was capable of using as growth substrates. Genetic analysis revealed the benzene dioxygenase pathway is involved in benzene catabolism in strain B-4. A deletion-insertion mutant defective in the benzene dioxygenase large and small subunits genes (bnz A 1 and bnz A 2) was as tolerant to organic solvents as the wild-type strain B-4, suggesting that utilization or degradation of organic solvents is not essential for the organic solvent tolerance of R. opacus B-4.

摘要

从土壤样品中分离出22株利用苯的细菌。其中,三株分离菌对苯具有高度耐受性。当在基础盐培养基中添加10%-90%(v/v)的液态苯时,它们能够在苯上生长。分类学分析确定耐苯分离菌为不透明红球菌。其中一株耐苯分离菌,命名为B-4,能够利用许多芳香烃和脂肪烃,包括苯、甲苯、苯乙烯、二甲苯、乙苯、丙苯、正辛烷和正癸烷作为唯一的碳源和能源。菌株B-4在10%(v/v)能够用作生长底物的有机溶剂存在下生长良好。遗传分析表明,苯双加氧酶途径参与菌株B-4中的苯分解代谢。苯双加氧酶大亚基和小亚基基因(bnz A 1和bnz A 2)有缺陷的缺失插入突变体与野生型菌株B-4对有机溶剂的耐受性相同,这表明有机溶剂的利用或降解对于不透明红球菌B-4的有机溶剂耐受性并非必不可少。

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