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矢野鞘氨醇单胞菌B1对芳香烃的降解作用

Aromatic hydrocarbon degradation by Sphingomonas yanoikuyae B1.

作者信息

Zylstra G J, Kim E

出版信息

J Ind Microbiol Biotechnol. 1997 Nov-Dec;19(5-6):408-14. doi: 10.1038/sj.jim.2900475.

Abstract

Sphingomonas yanoikuyae B1 is able to grow on a wide variety of aromatic compounds including biphenyl, naphthalene,phenanthrene, toluene, m-, and p-xylene. In addition, the initial enzymes for degradation of biphenyl have the ability to metabolize a wide variety of different polycyclic aromatic hydrocarbons. The catabolic pathways for the degradation of both the monocyclic and polycyclic aromatic hydrocarbons are intertwined, joining together at the level of (methyl)benzoate and catechol. Both upper branches of the catabolic pathways are induced when S. yanoikuyae B1 is grown on either class of compound. An analysis of the genes involved in the degradation of these aromatic compounds reveals that at least six operons are involved. The genes are not arranged in discrete pathway units but are combined in groups with genes for the degradation of both classes of compounds in the same operon.Genes for multiple dioxygenases are present perhaps explaining the ability of S. yanoikuyae B1 to grow on a wide variety of aromatic compounds.

摘要

矢野氏鞘氨醇单胞菌B1能够在多种芳香族化合物上生长,包括联苯、萘、菲、甲苯、间二甲苯和对二甲苯。此外,联苯降解的起始酶有能力代谢多种不同的多环芳烃。单环和多环芳烃降解的分解代谢途径相互交织,在(甲基)苯甲酸酯和儿茶酚水平上汇合。当矢野氏鞘氨醇单胞菌B1在这两类化合物中的任何一类上生长时,分解代谢途径的两个上分支都会被诱导。对参与这些芳香族化合物降解的基因分析表明,至少有六个操纵子参与其中。这些基因不是以离散的途径单元排列,而是在同一个操纵子中与两类化合物降解的基因组合在一起。存在多个双加氧酶的基因,这可能解释了矢野氏鞘氨醇单胞菌B1在多种芳香族化合物上生长的能力。

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