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首页> 外文期刊>Applied Microbiology and Biotechnology >Ferulic acid transformation into the main vanilla aroma compounds by Amycolatopsis sp ATCC 39116
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Ferulic acid transformation into the main vanilla aroma compounds by Amycolatopsis sp ATCC 39116

机译:支链淀粉菌ATCC 39116将阿魏酸转化为主要的香草香气成分

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The wild strain Amycolatopsis sp. ATCC 39116 was explored in ferulic acid-based media to produce naturally the aroma components of the cured vanilla pod, namely vanillin, vanillic acid, and vanillyl alcohol. Other phenolic compounds (4-vinyl guaiacol, guaiacol, and protocatechuic acid) were also evaluated. The influence of medium composition, fermentation technology (batch or fed-batch), supplementation with vanillic acid, and inoculum concentration on ferulic acid biotransformation were evaluated. The results postulate the initial concentration of cell mass as the variable with the strongest impact on ferulic acid metabolization under the studied conditions. The highest amounts of vanillin and vanillic acid were achieved at intermediate values of cell mass. Vanillyl alcohol and protocatechuic acid were more closely linked to high cell mass concentrations. Conversely, 4-vinyl guaiacol reached its highest amount at the lowest amount of cell mass. Guaiacol was not detected in any case. Therefore, the initial cell concentration must be considered a critical parameter when using Amycolaptosis sp. ATCC 39116 for the production of vanillin and related compounds.
机译:野生菌株Amycolatopsis sp。在基于阿魏酸的培养基中探索了ATCC 39116,以自然产生固化的香草豆荚的香气成分,即香兰素,香草酸和香草醇。还评估了其他酚类化合物(4-乙烯基愈创木酚,愈创木酚和原儿茶酸)。评估了培养基组成,发酵技术(分批或补料分批),香草酸的补充以及接种浓度对阿魏酸生物转化的影响。结果假定在研究条件下,细胞质量的初始浓度是变量,对阿魏酸的代谢影响最大。在细胞质量的中间值时,香草醛和香草酸的含量最高。香兰醇和原儿茶酸与高细胞质量浓度紧密相关。相反,4-乙烯基愈创木酚以最低的细胞量达到其最高的量。在任何情况下均未检测到愈创木酚。因此,当使用支链淀粉菌时,初始细胞浓度必须被视为关键参数。 ATCC 39116用于生产香兰素和相关化合物。

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