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Two types of alcohol dehydrogenase from Perilla can form citral and perillaldehyde.

机译:紫苏中的两种醇脱氢酶可以形成柠檬醛和紫苏醛。

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摘要

Studies on the biosynthesis of oil compounds in Perilla will help in understanding regulatory systems of secondary metabolites and in elucidating reaction mechanisms for natural product synthesis. In this study, two types of alcohol dehydrogenases, an aldo-keto reductase (AKR) and a geraniol dehydrogenase (GeDH), which are thought to participate in the biosynthesis of perilla essential oil components, such as citral and perillaldehyde, were isolated from three pure lines of perilla. These enzymes shared high amino acid sequence identity within the genus Perilla, and were expressed regardless of oil type. The overall reaction from geranyl diphosphate to citral was performed in vitro using geraniol synthase and GeDH to form a large proportion of citral and relatively little geraniol as reaction products. The biosynthetic pathway from geranyl diphosphate to citral, the main compound of citral-type perilla essential oil, was established in this study.
机译:对紫苏中油类化合物生物合成的研究将有助于理解次生代谢产物的调控系统,并阐明天然产物合成的反应机理。在这项研究中,从三种中分离出了两种类型的醇脱氢酶,一种醛基酮还原酶(AKR)和一种香叶醇脱氢酶(GeDH),它们参与了紫苏精油成分的生物合成,如柠檬醛和紫苏醛。紫苏的纯系。这些酶在紫苏属中具有较高的氨基酸序列同一性,并且无论油的类型如何表达。使用香叶醇合酶和GeDH在体外进行了从香叶基二磷酸到柠檬醛的全部反应,以形成较大比例的柠檬醛和相对少的香叶醇作为反应产物。本研究建立了从香叶基二磷酸到柠檬醛的生物合成途径,柠檬醛是紫苏型紫苏精油的主要化合物。

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