首页> 外文OA文献 >(E)-β-Ocimene and Myrcene Synthase Genes of Floral Scent Biosynthesis in Snapdragon: Function and Expression of Three Terpene Synthase Genes of a New Terpene Synthase Subfamily
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(E)-β-Ocimene and Myrcene Synthase Genes of Floral Scent Biosynthesis in Snapdragon: Function and Expression of Three Terpene Synthase Genes of a New Terpene Synthase Subfamily

机译:金鱼草中花香生物合成的(E)-β-奥西米烯和月桂烯合酶基因:一个新的萜烯合酶亚家族的三个萜烯合酶基因的功能和表达

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摘要

Snapdragon flowers emit two monoterpene olefins, myrcene and (E)-β-ocimene, derived from geranyl diphosphate, in ad-dition to a major phenylpropanoid floral scent component, methylbenzoate. Emission of these monoterpenes is regulated developmentally and follows diurnal rhythms controlled by a circadian clock. Using a functional genomics approach, we have isolated and characterized three closely related cDNAs from a snapdragon petal-specific library that encode two myrcene synthases (ama1e20 and ama0c15) and an (E)-β-ocimene synthase (ama0a23). Although the two myrcene synthases are almost identical (98%), except for the N-terminal 13 amino acids, and are catalytically active, yielding a single monoterpene product, myrcene, only ama0c15 is expressed at a high level in flowers and contributes to floral myrcene emission. (E)-β-Ocimene synthase is highly similar to snapdragon myrcene synthases (92% amino acid identity) and produces predominantly (E)-β-ocimene (97% of total monoterpene olefin product) with small amounts of (Z)-β-ocimene and myrcene. These newly isolated snapdragon monoterpene synthases, together with Arabidopsis AtTPS14 (At1g61680), define a new subfamily of the terpene synthase (TPS) family designated the Tps-g group. Members of this new Tps-g group lack the RRx8W motif, which is a characteristic feature of the Tps-d and Tps-b monoterpene synthases, suggesting that the reaction mechanism of Tps-g monoterpene synthase product formation does not proceed via an RR-dependent isomerization of geranyl diphosphate to 3S-linalyl diphosphate, as shown previously for limonene cyclase. Analyses of tissue-specific, developmental, and rhythmic expression of these monoterpene synthase genes in snapdragon flowers revealed coordinated regulation of phenylpropanoid and isoprenoid scent production.
机译:金鱼草花散发出两种单萜烯烯烃,即月桂烯和(E)-β-烯丙二烯,其衍生自二磷酸香叶基酯,以及主要的苯丙烷类花香成分甲基苯甲酸酯。这些单萜的排放受到发育的调节,并遵循昼夜节律控制的昼夜节律。使用功能基因组学方法,我们从金鱼草花瓣特异的文库中分离并鉴定了三个紧密相关的cDNA,它们编码两个月桂烯合酶(ama1e20和ama0c15)和一个(E)-β-ocimene合酶(ama0a23)。尽管两个月桂烯合酶几乎相同(98%)(除N端的13个氨基酸外),并且具有催化活性,产生单一的单萜产物月桂烯,但只有ama0c15在花中高水平表达,并有助于花卉月桂烯发射。 (E)-β-奥西美烯合酶与金鱼草月桂烯合酶(92%氨基酸同一性)高度相似,主要产生(E)-β-西奥美烯(占单萜烯烯烃总产物的97%)和少量的(Z)-β -ocimene和月桂烯。这些新近分离的金鱼草单萜合酶与拟南芥属AtTPS14(At1g61680)一起,定义了称为Tps-g组的萜烯合酶(TPS)家族的新亚家族。这个新的Tps-g组成员缺少RRx8W基序,这是Tps-d和Tps-b单萜合酶的特征,表明Tps-g单萜合酶产物形成的反应机理不是通过RR-如先前关于柠檬烯环化酶所示,香叶基二磷酸依赖的异构化为3S-芳基二磷酸。这些单萜合酶基因在金鱼草花中的组织特异性,发育性和节律性表达分析表明,苯丙烷和类异戊二烯的气味产生协调调控。

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