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首页> 外文期刊>Pharmacognosy Research >Presence of monoterpene synthase in four Labiatae species and Solid-Phase Microextraction- Gas chromatography-Mass Spectroscopy analysis of their aroma profiles
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Presence of monoterpene synthase in four Labiatae species and Solid-Phase Microextraction- Gas chromatography-Mass Spectroscopy analysis of their aroma profiles

机译:四种唇形目科植物中存在单萜合酶并进行固相微萃取-气相色谱-质谱分析其香气

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Background:The family Lamiaceae (Labiatae) has included some medicinal plants. some monoterpene synthases, including linalool and limonene synthases, have been cloned and functionally characterized from several plants of Labiatae family.Materials and Methods:In this study, presence of linalool and limonene synthases, in four species of Labiatae family including Nepeta cataria, Lavandula angustifolia, Hyssopus officinalis and Salvia sclarea has been determined by molecular biological techniques together with the Head space SPME – GC-MS analysis of the aroma profile of these species.Results:Indicated that none of the plant species produced distinguishable bands with primer pairs related to d-limonene synthase. Distinguishable bands around 1800 bp in cDNA samples of L. angustifolia, H. officinalis and S. sclarea were observed regarding to the presence of linalool synthase. Head space SPME-GC-MS analysis of the aroma profiles of the above-mentioned plants showed that linalool (31.0%), linalyl acetate (18.2%), were found as the major compounds of L. angustifolia, while geraniol (5.5%), nerol (34.0%) and α- citral (52.0%) were identified as the main compounds of the N. cataria. The major components of H. officinalis and S. sclarea oils were determined as cis-pinocamphone (57.3%), and linalool (19.0%), linalyl acetate (51.5%), respectively.Conclusion:H. officinalis was rich of cyclic monoterpenes, L. angustifolia, N. cataria and S. sclarea showed considerable amount of linear monoterpenes. The aroma profile of the above-mentioned plants contained low concentration of sesquiterpenes except N. cataria, which indicated no sesquiterpene. The profiles of the main components of these plants are in agreement with molecular assays.
机译:背景:唇形科(唇形科)包括一些药用植物。已经从唇形科的几种植物中克隆了一些单萜合酶,包括芳樟醇和柠檬烯合酶。并对其功能进行了表征。 ,通过分子生物学技术以及顶空SPME – GC-MS分析了这些物种的香气,测定了Hyssopus officinalis和Salvia sclarea。结果:表明没有植物物种产生与d相关的引物对可区分的条带-柠檬烯合酶。关于芳樟醇合酶的存在,观察到了在安氏乳杆菌,厚朴和S. sclarea的cDNA样品中约1800 bp的可分辨条带。对上述植物的香气特征进行顶空SPME-GC-MS分析,结果发现芳樟醇(31.0%),乙酸芳樟酯(18.2%)被发现为安氏紫苏的主要成分,而香叶醇(5.5%) ,神经甾醇(34.0%)和α-柠檬醛(52.0%)被确定为加倍体猪笼草的主要化合物。确定了厚朴油和S. sclarea油的主要成分分别为顺式-pinocamphone(57.3%)和芳樟醇(19.0%),乙酸芳樟酯(51.5%)。厚朴的环状单萜类很丰富,古铜色L. angustifolia,N。cataria和S. sclarea显示出相当数量的线性单萜。上述植物的香气特征包含低浓度的倍半萜烯,但不存在加倍体猪笼草,这表明没有倍半萜烯。这些植物主要成分的概况与分子测定一致。

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