首页> 外文期刊>FEMS Yeast Research >The role of yeast ARO8, ARO9 and ARO1O genes in the biosynthesis of 3-(methylthio)-1-propanol from L-methionine during fermentation in synthetic grape medium
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The role of yeast ARO8, ARO9 and ARO1O genes in the biosynthesis of 3-(methylthio)-1-propanol from L-methionine during fermentation in synthetic grape medium

机译:酵母ARO8,ARO9和ARO1O基因在合成葡萄培养基中发酵过程中L-甲硫氨酸的3-(甲基硫基)-1-丙醇的生物合成中的作用

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摘要

3-(methylthio)-1-propanol (methionol), produced by yeast as an end-product of L-methionine (L-Met) catabolism, imparts off-odours reminiscent of cauliflower and potato to wine. Saccharomyces cerevisiae ARO genes, including transaminases Aro8p and Aro9p, and decarboxylase Aro10p, catalyse two key steps forming methionol via the Ehrlich pathway. We compared methionol concentrations in wines fermented by single Delta aro8, Delta aro9 and Delta aro10 deletants in lab strain BY4743 versus wine strain Zymaflore F15, and F15 double- and triple-aro deletants versus single-aro deletants, using headspace-solid phase microextraction coupled with gas chromatography-mass spectrometry.
机译:由酵母产生的3-(甲硫基)-1-丙醇(甲硫醇)作为L-甲硫氨酸(L-MET)分解代谢的最终产物,赋予缺水使Cauliflower和马铃薯称呼葡萄酒。 酿酒酵母酿酒酵母ARO基因,包括转氨酶ARO8P和ARO9P,以及脱羧酶ARO10P,催化通过EHRLICH途径形成甲硫醇的两个关键步骤。 我们将甲硫醇浓度与单次δARO8发酵的葡萄酒中的甲硫醇浓度进行比较,Delta ARO9和Delta ARO10饮用剂在Lab菌株与葡萄酒菌株ZymaFlore F15,以及F15双 - ARO缺失与单ARO缺失剂,使用顶部固体相位微萃取耦合 用气相色谱 - 质谱。

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