Zhang Yongmei, Xu Ping, Han Shuai, Yan Haiqin, Ma Cuiqing
State Key Laboratory of Microbial Technology, Shandong University, Jinan 250100, People's Republic of China.
Appl Microbiol Biotechnol. 2006 Dec;73(4):771-9. doi: 10.1007/s00253-006-0544-x. Epub 2006 Aug 30.
A bacterium designated as HS8 was newly isolated from soil based on its ability to degrade isoeugenol. The strain was identified as Bacillus subtilis according to its 16S rDNA sequence analysis and biochemical characteristics. The metabolic pathway for the degradation of isoeugenol was examined. Isoeugenol-diol, for the first time, was detected as an intermediate from isoeugenol to vanillin by a bacterial strain. Isoeugenol was converted to vanillin via isoeugenol-diol, and vanillin was then metabolized via vanillic acid to guaiacol by strain HS8. These metabolites, vanillin, vanillic acid, and guaiacol, are all valuable aromatic compounds in flavor production. At the same time, the bipolymerization of isoeugenol was observed, which produced dehydrodiisoeugenol and decreased the vanillin yield. High level of vanillic acid decarboxylase activity was detected in cell-free extract. These findings provided a detailed profile of isoeugenol metabolism by a B. subtilis strain for the first time, which would improve the production of valuable aromatic compounds by biotechnology.
基于其降解异丁香酚的能力,从土壤中新分离出一种名为HS8的细菌。根据其16S rDNA序列分析和生化特性,该菌株被鉴定为枯草芽孢杆菌。对异丁香酚的降解代谢途径进行了研究。首次检测到异丁香酚二醇是一种细菌菌株将异丁香酚降解为香草醛过程中的中间产物。HS8菌株通过异丁香酚二醇将异丁香酚转化为香草醛,然后香草醛通过香草酸进一步代谢为愈创木酚。这些代谢产物,香草醛、香草酸和愈创木酚,都是香料生产中重要的芳香族化合物。同时,观察到异丁香酚的二聚反应,该反应生成脱氢二异丁香酚并降低了香草醛的产量。在无细胞提取物中检测到高水平的香草酸脱羧酶活性。这些发现首次详细描述了枯草芽孢杆菌菌株对异丁香酚的代谢情况,这将通过生物技术提高重要芳香族化合物的产量。