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The Degradation of L-Tyrosine to Phenol and Benzoate in Pig Manure The Role of 4-Hydroxy-Benzoate

机译:L-酪氨酸在猪粪中的降解为苯酚和苯甲酸酯4-羟基苯甲酸酯的作用

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The formation of odorous compounds in piggery wastes was investigated. Phenol and para-cresol are generally encountered in these typically anaerobic environments. They are produced from L-tyrosine by microbial metabolism. Phenol is further converted to benzoate via para-carboxylation. The biochemical pathways were studied by feeding manure with miscelleanous metabolites at concentration between 5 and 20 mM. Metabolites were analyzed by gas chromatography (GC) and high-performance liquid chromatography (HPLC). Experiments were carried out at room temperature. The degradation of L-tyrosine to phenol, benzoate, and para-cresol was confirmed. 4HPPyrA and 4HPAA are not intermediate compounds in phenol production. It was shown that phenol was converted to benzoate without any production of 4HBA. Other experiments showed that 4HBA was decar-boxylated to phenol, but not dehydroxylated to benzoate. When phenol was added in presence of benzoate (5 mM each) or alone at higher concentrations (10 or 20 mM), transient small amounts of 4HBA were observed (about 0.02 mM). Our experiments show that 4HBA is not an intermediate metabolite in the conversion of phenol to benzoate. The decarboxylation of 4HBA to phenol is probably the last step of another degradation pathway. This reaction is proposed to have a weakly reversible property, explaining 4HBA production.
机译:研究了猪粪中臭味化合物的形成。在这些典型的厌氧环境中通常会遇到苯酚和对甲酚。它们是通过微生物代谢从L-酪氨酸产生的。苯酚通过对羧化进一步转化为苯甲酸酯。通过向粪肥中添加浓度为5至20 mM的杂种代谢物来研究生化途径。代谢物通过气相色谱(GC)和高效液相色谱(HPLC)进行分析。实验在室温下进行。证实了L-酪氨酸降解为苯酚,苯甲酸酯和对甲酚。 4HPPyrA和4HPAA不是苯酚生产中的中间化合物。结果表明,苯酚被转化为苯甲酸酯而没有任何4HBA的产生。其他实验表明,4HBA被羧基脱酚成苯酚,但没有被脱羟基成苯甲酸酯。当在苯甲酸酯存在下(每个5 mM)或单独以较高浓度(10或20 mM)添加苯酚时,观察到短暂的少量4HBA(约0.02 mM)。我们的实验表明4HBA并不是苯酚向苯甲酸酯转化的中间代谢产物。 4HBA脱羧为苯酚可能是另一种降解途径的最后一步。建议该反应具有弱可逆性,从而解释了4HBA的产生。

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