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Naphthalene Degradation and Incorporation of Naphthalene-Derived Carbon into Biomass by the Thermophile Bacillus thermoleovorans

机译:嗜热芽孢杆菌嗜热芽孢杆菌降解萘并将萘衍生的碳掺入生物质

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摘要

The thermophilic aerobic bacterium Bacillus thermoleovorans Hamburg 2 grows at 60°C on naphthalene as the sole source of carbon and energy. In batch cultures, an effective substrate degradation was observed. The carbon balance, including naphthalene, metabolites, biomass, and CO2, was determined by the application of [1-13C]naphthalene. The incorporation of naphthalene-derived carbon into the bulk biomass as well as into specified biomass fractions such as fatty acids and amino acids was confirmed by coupled gas chromatography-mass spectrometry (GC-MS) and isotope analyses. Metabolites were characterized by GC-MS; the established structures allow tracing the degradation pathway under thermophilic conditions. Apart from typical metabolites of naphthalene degradation known from mesophiles, intermediates such as 2,3-dihydroxynaphthalene, 2-carboxycinnamic acid, and phthalic and benzoic acid were identified for the pathway of this bacterium. These compounds indicate that naphthalene degradation by the thermophilic B. thermoleovorans differs from the known pathways found for mesophilic bacteria.
机译:嗜热性好氧细菌Thermoleovorans Hamburg 2在60°C的条件下以萘作为碳和能量的唯一来源生长。在分批培养中,观察到有效的底物降解。通过使用[1- 13 C]萘确定了包括萘,代谢物,生物量和CO2在内的碳平衡。通过偶联气相色谱-质谱(GC-MS)和同位素分析证实了萘衍生的碳掺入整体生物质以及特定的生物质馏分(例如脂肪酸和氨基酸)中。代谢物通过GC-MS进行表征。既定的结构可以追踪嗜热条件下的降解途径。除了由嗜温菌已知的萘降解的典型代谢产物外,还确定了中间体(如2,3-二羟基萘,2-羧肉桂酸,邻苯二甲酸和苯甲酸)可用于该细菌。这些化合物表明嗜热芽孢杆菌对萘的降解不同于嗜温细菌发现的已知途径。

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