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首页> 外文期刊>Phytochemical Analysis >A survey of sesamin and composition of tocopherol variability from seeds of eleven diverse sesame (Sesamum indicum L.) genotypes using HPLC-PAD-ECD.
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A survey of sesamin and composition of tocopherol variability from seeds of eleven diverse sesame (Sesamum indicum L.) genotypes using HPLC-PAD-ECD.

机译:使用HPLC-PAD-ECD对11种不同芝麻(Sesamum indicum L.)基因型种子的芝麻素和生育酚变异性成分进行了调查。

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The objective of this study was to determine the composition and content of sesamin and desmethyl tocopherols such as alpha-tocopherol (alphaT), delta-tocopherol (deltaT) and gamma-tocopherol (gammaT) in seeds of sesame (Sesamum indicum L.) for 11 genotypes conserved in the United States Department of Agriculture (USDA), Agricultural Research Service (ARS) and Plant Genetic Resources Conservation Unit (PGRCU) in Griffin, Georgia, USA. Seed accessions studied were collections from eight countries worldwide, including one landrace from Thailand and two cultivars from Texas, USA. Novel methodologies and analytical techniques described herein consisted of reverse-phase high-performance liquid chromatography (HPLC) connected in series with two detection systems specific for each analyte class. Photodiode array detection was employed for sesamin analysis and electrochemical array detection was used in the determination of tocopherols. A preliminary study was conducted to assess sesamin levels in 2003 and tocopherol levels in 2004 from sesame seed samples conserved at the USDA, ARS and PGRCU. In 2005, sesame seed samples were grown, harvested and evaluated for sesamin as well as tocopherol levels. The overall results (n = 3) showed that sesamin, alphaT, deltaT and gammaT levels were 0.67-6.35 mg/g, 0.034-0.175 microg/g, 0.44-3.05 microg/g and 56.9-99.3 microg/g respectively, indicating that the sesame seed accessions contained higher levels of sesamin and gammaT compared with alphaT and deltaT. Statistical analysis was conducted and significant differences were observed among the 11 different sesame genotypes. This suggests that genetic, environmental and geographical factors influence sesamin and desmethyl tocopherol content.
机译:这项研究的目的是确定芝麻(Sesamum indicum L.)种子中芝麻素和去甲基生育酚的组成和含量,例如α-生育酚(alphaT),δ-生育酚(deltaT)和γ-生育酚(gammaT)。美国农业部(USDA),农业研究局(ARS)和美国乔治亚州格里芬的植物遗传资源保护单位(PGRCU)保留了11种基因型。研究的种子种质来自全球八个国家,其中包括来自泰国的一个地方品种和来自美国德克萨斯州的两个品种。本文所述的新方法和分析技术由串联连接的反相高效液相色谱(HPLC)与两个特定于每种分析物类别的检测系统组成。光电二极管阵列检测用于芝麻素分析,电化学阵列检测用于生育酚的测定。进行了一项初步研究,以评估美国农业部,美国农业科学研究所和PGRCU保存的芝麻样品中2003年的芝麻素水平和2004年的生育酚水平。 2005年,种植,收获了芝麻种子样品并评估了芝麻素和生育酚的含量。总体结果(n = 3)显示,芝麻素,αT,δT和gammaT含量分别为0.67-6.35 mg / g,0.034-0.175 microg / g,0.44-3.05 microg / g和56.9-99.3 microg / g,表明与αT和δT相比,芝麻种子中的芝麻素和γT含量更高。进行了统计分析,并观察到11种不同芝麻基因型之间的显着差异。这表明遗传,环境和地理因素会影响芝麻素和去甲基生育酚的含量。

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