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From the Cover: Eugenol and isoeugenol characteristic aromatic constituents of spices are biosynthesized via reduction of a coniferyl alcohol ester

机译:从封面开始:丁香酚和异丁香酚香料的特征性芳香成分通过还原松柏油醇酯进行生物合成

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摘要

Phenylpropenes such as chavicol, t-anol, eugenol, and isoeugenol are produced by plants as defense compounds against animals and microorganisms and as floral attractants of pollinators. Moreover, humans have used phenylpropenes since antiquity for food preservation and flavoring and as medicinal agents. Previous research suggested that the phenylpropenes are synthesized in plants from substituted phenylpropenols, although the identity of the enzymes and the nature of the reaction mechanism involved in this transformation have remained obscure. We show here that glandular trichomes of sweet basil (Ocimum basilicum), which synthesize and accumulate phenylpropenes, possess an enzyme that can use coniferyl acetate and NADPH to form eugenol. Petunia (Petunia hybrida cv. Mitchell) flowers, which emit large amounts of isoeugenol, possess an enzyme homologous to the basil eugenol-forming enzyme that also uses coniferyl acetate and NADPH as substrates but catalyzes the formation of isoeugenol. The basil and petunia phenylpropene-forming enzymes belong to a structural family of NADPH-dependent reductases that also includes pinoresinol–lariciresinol reductase, isoflavone reductase, and phenylcoumaran benzylic ether reductase.
机译:植物生产苯丙烯类,例如查维醇,叔醇,丁子香酚和异丁香酚,作为对抗动物和微生物的防御化合物,并作为授粉媒介的花诱剂。此外,自古以来,人类就已将苯丙烯用于食品保存和调味以及用作药物。先前的研究表明,尽管在这种转化过程中涉及的酶的身份和反应机制的性质仍然不清楚,但是苯基丙烯是在植物中由取代的苯基丙烯醇合成的。我们在这里显示,合成和积累苯丙烯的甜罗勒(Ocimum basilicum)的腺毛具有一种可以使用乙酸松柏酸酯和NADPH形成丁香酚的酶。散发出大量异丁香酚的矮牵牛(Petunia hybrida cv。Mitchell)花拥有与罗勒丁香酚形成酶同源的酶,该酶也使用乙酸松柏基乙酸酯和NADPH作为底物,但催化异丁香酚的形成。罗勒和矮牵牛苯基丙烯形成酶属于NADPH依赖性还原酶的结构家族,其中还包括松脂醇-拉西树脂醇还原酶,异黄酮还原酶和苯基香豆素苄基醚还原酶。

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