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紫苏精油变异体的遗传分析

Genetic analysis of essential oil variants in Perilla frutescens.

作者信息

Yuba A, Honda G, Koezuka Y, Tabata M

机构信息

Faculty of Pharmaceutical Sciences, Kyoto University, Japan.

出版信息

Biochem Genet. 1995 Oct;33(9-10):341-8. doi: 10.1007/BF02399932.

Abstract

A new chemotype (C type) of Perilla frutescens (Labiatae) that accumulates trans-citral as a main component of the essential oil in the leaf was crossed with five other chemotypes containing perillaldehyde (PA), elsholtziaketone (EK), perillaketone (PK), perillene (PL), and phenylpropanoid (PP) as their respective major components for comparison of genetic differences. The analyses of F1 and F2 progenies showed that trans-citral is accumulated when its metabolism is blocked in the simultaneous absence of a dominant gene N, which is involved in the conversion of trans-citral into naginataketone via cis-citral, and two polymeric genes Fr1 and Fr2, which are involved in the conversion of trans-citral into perillene. On the basis of new data obtained from various intercrosses involving the C type as one of the parents, the genotypes of different chemotypes as well as the sites of action of several genes controlling reaction steps in the biosynthesis of monoterpenes in Perilla have been revised.

摘要

一种新的紫苏化学型(C型),其叶片中积累反式柠檬醛作为精油的主要成分,与其他五种化学型进行杂交,这五种化学型分别以紫苏醛(PA)、香薷酮(EK)、紫苏酮(PK)、紫苏烯(PL)和苯丙素(PP)作为各自的主要成分,以比较遗传差异。对F1和F2后代的分析表明,当反式柠檬醛的代谢在同时缺乏显性基因N(该基因参与反式柠檬醛通过顺式柠檬醛转化为长叶烯酮)和两个聚合基因Fr1和Fr2(这两个基因参与反式柠檬醛转化为紫苏烯)的情况下受阻时,反式柠檬醛就会积累。基于从以C型为亲本之一的各种杂交中获得的新数据,不同化学型的基因型以及紫苏中控制单萜生物合成反应步骤的几个基因的作用位点已被修订。

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