首页> 外文期刊>Journal of applied microbiology >Degradation of dibenzofuran via multiple dioxygenation by a newly isolated Agrobacterium sp. PH-08.
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Degradation of dibenzofuran via multiple dioxygenation by a newly isolated Agrobacterium sp. PH-08.

机译:通过新分离的农杆菌属物种的多次双加氧作用降解二苯并呋喃。 PH-08。

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Aims: To demonstrate the biodegradation of dibenzofuran (DF) and its structural analogs by a newly isolated Agrobacterium sp. PH-08. Methods and Results: To assess the biodegradation potential of newly isolated Agrobacterium sp. PH-08, various substrates were evaluated as sole carbon sources in growth and biotransformation experiments. ESI LC-MS/MS analysis revealed the presence of angular degrading by-products as well as lateral dioxygenation metabolites in the upper pathway. The metabolites in the lower pathway also were detected. In addition, the cometabolically degraded daughter compounds of DF-related compounds such as BP and dibenzothiophene (DBT) in dual substrate degradation were observed. Strain PH-08 exhibited the evidence of meta-cleavage pathway as confirmed by the activity and gene expression of catechol-2,3-dioxygenase. Conclusions: Newly isolated bacterial strain, Agrobacterium sp. PH-08, grew well with and degraded DF via both angular and lateral dioxygenation as demonstrated by metabolites identified through ESI LC-MS/MS and GC-MS analyses. The other heterocyclic pollutants were also cometabolically degraded. Significance and Impact of the Study: Few reports have described the complete degradation of DF by a cometabolic lateral pathway. Our study demonstrates the novel results that the newly isolated strain utilized the DF as a sole carbon source and mineralized it via multiple dioxygenation.
机译:目的:证明新分离的农杆菌属菌株对二苯并呋喃(DF)及其结构类似物的生物降解作用。 PH-08。方法和结果:评价新分离的土壤杆菌属的生物降解潜力。 PH-08,各种底物在生长和生物转化实验中被视为唯一的碳源。 ESI LC-MS / MS分析显示,在上部通道中存在角度降解副产物以及侧向双加氧代谢产物。下部路径中的代谢物也被检测到。此外,在双底物降解中观察到了与DF有关的化合物如BP和二苯并噻吩(DBT)的代谢降解子化合物。邻苯二酚-2,3-双加氧酶的活性和基因表达证实了菌株PH-08的裂解途径。结论:新分离的菌株,农杆菌属。通过ESI LC-MS / MS和GC-MS分析鉴定出的代谢产物表明,PH-08在角向和侧向双氧合作用下都能很好地生长并降解DF。其他杂环污染物也被代谢分解。研究的意义和影响:很少有报道描述通过代谢性侧向通路完全降解DF。我们的研究表明了新的结果,即新分离出的菌株利用DF作为唯一的碳源,并通过多次双加氧作用使其矿化。

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