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Methanogenic Decomposition of Ferulic Acid a Model Lignin Derivative

机译:木质素衍生物模型阿魏酸的产甲烷分解

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摘要

Ferulic acid, a model lignin derivative, was observed to be biodegradable to methane and carbon dioxide under strict anaerobic conditions. This conversion appears to be carried out by a consortium of bacteria similar to that previously described for the methanogenic degradation of benzoic acid. A temporary buildup of acetate in these cultures indicates that it is a likely intermediate and precursor for methane formation. An analog of coenzyme M, 2-bromoethanesulfonic acid (BESA), inhibited gas production and enhanced the buildup of propionate, butyrate, isobutyrate, and isovalerate. Phenylacetate, cinnamate, 3-phenylpropionate, benzoate, cyclohexane carboxylate, adipate, and pimelate were also detected in BESA-inhibited cultures. A pathway is proposed which includes these various acids as possible intermediates in the methanogenic degradation of ferulic acid. This model overlaps previously described benzoic acid degradation pathways, suggesting that this type of anaerobic degradation may be common for aromatic compounds.
机译:阿魏酸(一种典型的木质素衍生物)在严格的厌氧条件下可生物降解为甲烷和二氧化碳。这种转化似乎是由与先前关于苯甲酸的甲烷化降解所描述的细菌类似的一组细菌进行的。这些培养物中乙酸盐的临时积累表明它可能是甲烷形成的中间体和前体。辅酶M的类似物2-溴乙烷磺酸(BESA)抑制了气体产生,并增强了丙酸酯,丁酸酯,异丁酸酯和异戊酸酯的积累。在抑制BESA的培养物中也检测到了乙酸苯酯,肉桂酸酯,3-苯基丙酸酯,苯甲酸酯,环己烷羧酸酯,己二酸酯和庚二酸酯。提出了一种途径,其包括这些各种酸作为阿魏酸产甲烷降解中的可能中间体。该模型与先前描述的苯甲酸降解途径重叠,表明这种厌氧降解对于芳香族化合物可能是常见的。

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