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证明苎烯是薄荷和其他薄荷属植物中含氧对薄荷烷单萜生物合成的首个环状中间体。

Demonstration that limonene is the first cyclic intermediate in the biosynthesis of oxygenated p-menthane monoterpenes in Mentha piperita and other Mentha species.

作者信息

Kjonaas R, Croteau R

出版信息

Arch Biochem Biophys. 1983 Jan;220(1):79-89. doi: 10.1016/0003-9861(83)90389-2.

Abstract

The volatile oil of mature Mentha piperita (peppermint) leaves contains as major components the oxygenated p-menthane monoterpenes l-menthol (47%) and l-menthone (24%) as well as very low levels of the monoterpene olefins limonene (1%) and terpinolene (0.1%), which are considered to be probable precursors of the oxygenated derivatives. Immature leaves, which are actively synthesizing monoterpenes, produce an oil with comparatively higher levels of limonene (approximately 3%), and isolation of the pure olefin showed this compound to consist of approximately 80% of the l-(4S)-enantiomer and approximately 20% of the d-(4R)-enantiomer. The time course of incorporation of [U-14C]sucrose into the monoterpenes of M. piperita shoot tips was consistent with the initial formation of limonene and its subsequent conversion to menthone via pulegone. d,l-[9-3H]Limonene and [9,10-3H]terpinolene were prepared and tested directly as precursors of oxygenated p-menthane monoterpenes in M. piperita shoot tips. Limonene was readily incorporated into pulegone, menthone, and other oxygenated derivatives, whereas terpinolene was not appreciably incorporated into these compounds. Similarly, d,l-[9-3H]limonene was specifically incorporated into pulegone in Mentha pulegium and into the C-2-oxygenated derivative carvone in Mentha spicata, confirming the role of this olefin as the essential precursor of oxygenated p-menthane monoterpenes. Soluble enzyme preparations from the epidermis of immature M. piperita leaves converted the acyclic terpenoid precursor [1-3H]geranyl pyrophosphate to limonene as the major cyclic product, providing a further indication that this olefin plays a central role in the formation of oxygenated monoterpenes in Mentha. No free intermediates were detected in the cyclization of geranyl pyrophosphate to limonene, suggesting that the olefin is the first cyclic intermediate to arise in the pathway, and resolution of the biosynthetic limonene, by crystallization of the derived d- and l-carvoximes, indicated an enantiomer mixture nearly identical to that isolated from the leaf oil.

摘要

成熟胡椒薄荷(薄荷)叶片的挥发油主要成分是含氧对薄荷烷单萜(-)-薄荷醇(47%)和(-)-薄荷酮(24%),以及含量极低的单萜烯烃柠檬烯(1%)和萜品油烯(0.1%),它们被认为是含氧衍生物的可能前体。正在积极合成单萜的未成熟叶片产生的油中柠檬烯含量相对较高(约3%),分离出的纯烯烃显示该化合物由约80%的l-(4S)-对映体和约20%的d-(4R)-对映体组成。[U-14C]蔗糖掺入胡椒薄荷茎尖单萜的时间进程与柠檬烯最初形成及其随后通过胡薄荷酮转化为薄荷酮的过程一致。制备了d,l-[9-3H]柠檬烯和[9,10-3H]萜品油烯,并直接作为胡椒薄荷茎尖含氧对薄荷烷单萜的前体进行测试。柠檬烯很容易掺入胡薄荷酮、薄荷酮和其他含氧衍生物中,而萜品油烯没有明显掺入这些化合物中。同样,d,l-[9-3H]柠檬烯特异性地掺入唇萼薄荷中的胡薄荷酮和留兰香中的C-2含氧衍生物香芹酮中,证实了这种烯烃作为含氧对薄荷烷单萜的必需前体的作用。来自未成熟胡椒薄荷叶片表皮的可溶性酶制剂将无环萜类前体[1-3H]香叶基焦磷酸转化为柠檬烯作为主要的环化产物,进一步表明这种烯烃在薄荷含氧单萜的形成中起核心作用。在香叶基焦磷酸环化生成柠檬烯的过程中未检测到游离中间体,这表明该烯烃是该途径中产生的第一个环化中间体,通过衍生的d-和l-蒈肟结晶对生物合成的柠檬烯进行拆分,得到的对映体混合物与从叶油中分离出的几乎相同。

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