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Differences in the chemotype of two native spearmint clonal lines selected for rosmarinic acid accumulation in comparison to commercially grown native spearmint

机译:与商业种植的天然留兰香相比,选择用于迷迭香酸积累的两种天然留兰香无性系的化学型差异

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Rosmarinic acid (RA) is a water soluble antioxidant present in many Lamiaceae species at varying levels, including spearmint (Mentha spicata L). Two proprietary spearmint clonal lines, KI110 and KI42, with elevated levels of RA (designated Hi-RA) are currently being grown in Indiana for the commercial extraction of RA. The two Hi-RA clonal lines were selected from a native spearmint genetic background and are distinct in their phytochemical composition relative to native spearmint that is commercially grown for purposes of extraction of volatile oils for flavoring applications ("commercial spearmint"). The aim of this study was to describe the major compositional chemotypic differences between the proprietary Hi-RA native spearmint clonal lines relative to a commercial native clonal line of spearmint grown in Indiana. Leaf tissue samples of KI110, KI42 and the commercial spearmint clonal line were collected from field locations in Indiana during June 2013 for RA quantitation and chemical profiling of the essential oil fraction. RA levels in KI110 and KI42 were significantly higher than the commercial spearmint samples. GC-MS analysis revealed major compositional differences between the Hi-RA and commercial spearmint oils. Carvone was the dominant molecule in the commercial spearmint oil, constituting 54% of its oil content. In contrast carvone was below the detection levels in the oils of the two Hi-RA clonal lines, KI110 and KI42. Limonene, another notable constituent of commercial spearmint, was found in lower amounts in the Hi-RA mint clonal lines. Mint lactone and alpha-cubebene, the predominant compounds in the oil fractions of Hi-RA clonal lines KI110 and KI42, respectively, were either absent or present in insignificant amounts in the commercial spearmint. Differential amounts of myrcene and 1,8-cineole were observed in the three mint oil samples. The chemical fingerprints of the Hi-RA spearmint clonal lines clearly differentiate them from commercial spearmint and they should therefore be considered distinct, clonal lines of spearmint (M. spicata) with potential heath-promotive properties associated with KI110 and KI42 plant extracts that contain higher level of rosmarinic acid. (C) 2014 Elsevier B.V. All rights reserved.
机译:迷迭香酸(RA)是一种水溶性抗氧化剂,在许多唇形科物种中以不同的水平存在,包括留兰香(Mentha spicata L)。目前正在印第安纳州种植两种具有较高RA水平的留兰香无性系KI110和KI42(称为Hi-RA),用于RA的商业提取。两种Hi-RA克隆系选自天然留兰香的遗传背景,并且相对于天然留兰香而言其植物化学组成是不同的,所述天然留兰香商业上用于提取用于调味应用的挥发油目的而种植(“商业留兰香”)。这项研究的目的是描述专有的Hi-RA天然留兰香克隆系与在印第安纳州生长的商业性留兰香薄荷系之间的主要化学组成差异。 2013年6月,从印第安那州的田间地点收集了KI110,KI42和商业留兰香无性系的叶片组织样品,以进行RA定量和精油馏分的化学分析。 KI110和KI42中的RA水平显着高于商品留兰香样品。 GC-MS分析表明,Hi-RA和商业留兰香油之间存在主要成分差异。香芹酮是商品留兰香油中的主要分子,占其油含量的54%。相反,香芹酮低于两个Hi-RA克隆系KI110和KI42的油中的检测水平。柠檬烯是商业留兰香的另一个重要组成部分,在Hi-RA薄荷克隆系中的含量较低。 Hi-RA克隆系KI110和KI42的油馏分中主要的化合物薄荷内酯和α-立方烯在商业留兰香中不存在或含量不高。在三个薄荷油样品中观察到了不同含量的月桂烯和1,8-桉树脑。 Hi-RA留兰香无性系的化学指纹清楚地将其与商业留兰香区分开来,因此应将其视为具有潜在健康促进特性的留兰香(M. spicata)独特的无性系,与KI110和KI42植物提取物中所含的较高迷迭香酸的水平。 (C)2014 Elsevier B.V.保留所有权利。

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