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Simultaneous biodegradation of creosote-polycyclic aromatic hydrocarbons by a pyrene-degrading Mycobacterium

机译:pyr降解的分枝杆菌同时降解杂酚多环芳烃

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摘要

When incubated with a creosote-polycyclic aromatic hydrocarbons (PAHs) mixture, the pyrene-degrading strain Mycobacterium sp. AP1 acted on three- and four-ring components, causing the simultaneous depletion of 25% of the total PAHs in 30 days. The kinetics of disappearance of individual PAHs was consistent with differences in aqueous solubility. During the incubation, a number of acid metabolites indicative of distinctive reactions carried out by high-molecular-weight PAH-degrading mycobacteria accumulated in the medium. Most of these metabolites were dicarboxylic aromatic acids formed as a result of the utilization of growth substrates (phenanthrene, pyrene, or fluoranthene) by multibranched pathways including meta- and ortho-ring-cleavage reactions: phthalic acid, naphthalene-1,8-dicarboxylic acid, phenanthrene-4,5-dicarboxylic acid, diphenic acid, Z-9-carboxymethylenefluorene-1-carboxylic acid, and 6,6′-dihydroxy-2,2′-biphenyl dicarboxylic acid. Others were dead-end products resulting from cometabolic oxidations on nongrowth substrates (fluorene meta-cleavage product). These results contribute to the general knowledge of the biochemical processes that determine the fate of the individual components of PAH mixtures in polluted soils. The identification of the partially oxidized compounds will facilitate to develop analytical methods to determine their potential formation and accumulation in contaminated sites.
机译:与杂酚多环芳烃(PAHs)混合物孵育时,the降解菌株Mycobacterium sp。 AP1作用于三环和四环组件,导致30天同时消耗了全部PAH的25%。各个PAH消失的动力学与水溶性的差异是一致的。在温育过程中,许多酸代谢产物积累在培养基中,这些酸代谢产物表明由高分子量PAH降解分枝杆菌进行的独特反应。这些代谢物大多数是二羧酸芳族酸,是通过多分支途径(包括间位和邻位环裂解反应)利用生长底物(菲,pyr或荧蒽)而形成的:邻苯二甲酸,萘-1,8-二羧酸酸,菲-4,5-二羧酸,联苯,Z-9-羧亚甲基芴-1-羧酸和6,6'-二羟基-2,2'-联苯二羧酸。其他的则是由非生长底物上的新陈代谢氧化产生的最终产物(芴间位裂解产物)。这些结果有助于确定污染土壤中PAH混合物各个成分的命运的生化过程的一般知识。对部分氧化的化合物的鉴定将有助于开发分析方法,以确定其在污染部位的潜在形成和积累。

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