首页> 外文期刊>Research in Microbiology >Elucidation of the metabolic pathway of fluorene and cometabolic pathways of phenanthrene, fluoranthene, anthracene and dibenzothiophene by Sphingomonas sp. LB126.
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Elucidation of the metabolic pathway of fluorene and cometabolic pathways of phenanthrene, fluoranthene, anthracene and dibenzothiophene by Sphingomonas sp. LB126.

机译:鞘氨醇单胞菌(Sphingomonas sp。)阐明了芴的代谢途径和菲,荧蒽,蒽和二苯并噻吩的新陈代谢途径。 LB126。

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The metabolic pathway of the PAH fluorene and the cometabolic pathway of the PAHs phenanthrene, fluoranthene, anthracene and dibenzothiophene in Sphingomonas sp. LB126 were examined. To our knowledge this is the first study on the cometabolic degradation of the three-ring PAHs phenanthrene, anthracene and the four-ring PAH fluoranthene by a fluorene-utilizing species. Metabolism of fluorene was shown to proceed via the 9-fluorenone pathway to form o-phthalic acid and protocatechuic acid. The cometabolic mono-hydroxylation found for phenanthrene, fluoranthene and anthracene shows similarity with the hydroxylation of fluorene. Several mono- and dihydroxy products and ring-cleavage products were identified for phenanthrene, fluoranthene and anthracene. It appeared that the cometabolism of those three compounds is a non-specific process, in contrast to the metabolism of fluorene. For dibenzothiophene the metabolites dibenzothiophene-5-oxide and dibenzothiophene-5,5-dioxide were identified; these compounds appeared to be the products of a dead-end pathway. Since apart from dibenzothiophene no metabolites were found in very high concentrations for any of the other substrates, complete degradation is suggested, even for the cometabolic degradation of phenanthrene, fluoranthene and anthracene.
机译:鞘氨醇单胞菌中PAH芴的代谢途径和PAHs菲,蒽,蒽和二苯并噻吩的代谢途径。检查了LB126。就我们所知,这是利用芴的物种对三环PAHs菲,蒽和四环PAH荧蒽的可代谢降解的首次研究。芴的代谢通过9-芴酮途径进行,从而形成邻苯二甲酸和原儿茶酸。发现的菲,荧蒽和蒽的新陈代谢单羟基化与芴的羟基化相似。鉴定了菲,荧蒽和蒽的几种单和二羟基产物和环裂解产物。与芴的代谢相反,这三种化合物的新陈代谢似乎是一个非特异性过程。对于二苯并噻吩,鉴定了代谢物二苯并噻吩-5-氧化物和二苯并噻吩-5,5-二氧化物。这些化合物似乎是一条死路。由于除了二苯并噻吩以外,没有发现其他任何底物的代谢物浓度都很高,因此建议完全降解,甚至是菲,荧蒽和蒽的可代谢降解。

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