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Differential distribution of polyphenols in plants using multivariate techniques

机译:使用多元技术的植物中多酚的差异分布

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Plants form a substantive portion of human diet that contains a plethora of structurally diverse polyphenols. These polyphenols extend both nutritional as well as disease preventive benefits to the consumer. Many ancient medicinal systems like Ayurveda reiterate the consumption of particular polyphenol rich plant in specific medical condition. Therefore, it is necessary to create a database of the contents of different polyphenols in various plants. This study compiles a bibliographic review of polyphenol distribution in different plants along with their statistical analysis like Pearson's correlation matrix, cluster analysis, principal component and factor analysis, and non-metric multidimensional scaling. It was observed that caffeic acid and quercetin were the most abundant polyphenols in the plants. A significant positive correlation of umbelliferone was found with kaempferol and epicatechin. Species having close proximities on the basis of polyphenols were Parthenium hysterophorus , Rumex dentatus , Achyranthus aspera , Chenopodium ambrosoides , Cannabis sativa , Rhododendron arboreum , Alternanthera philoxeroides , Debregeasia longifolia and C. album . Factor analysis showed four underlying factors for polyphenols. Factor-1 had maximum loadings on epicatechin, umbelliferone and kaempferol. Gallic acid and catechin had maximum loadings on factor-2. Factor-3 had maximum loadings on chlorogenic acid and quercetin, and factor-4 had maximum loading on coumaric acid.
机译:植物构成人类饮食的重要组成部分,其中包含大量结构多样的多酚。这些多酚为消费者提供了营养和疾病预防方面的好处。阿育吠陀等许多古代医学系统都重申了在特定医学条件下食用富含特定多酚的植物的过程。因此,有必要建立各种植物中不同多酚含量的数据库。这项研究汇编了不同植物中多酚分布的书目评论,以及它们的统计分析,例如Pearson相关矩阵,聚类分析,主成分和因子分析以及非度量多维标度。观察到咖啡酸和槲皮素是植物中最丰富的多酚。发现伞形酮与山奈酚和表儿茶素呈显着正相关。在多酚的基础上具有紧密接近性的物种有爬山虎(Parthenium hysterophorus),齿兰齿兰(Rumex dentatus),曲霉(Achyranthus aspera),,藜(Cheopodium ambrosoides),大麻(Cannabis sativa),杜鹃花杜鹃(Rhododendron arboreum),灰链花生(Alternanthera philoxeroides)。因子分析显示了多酚的四个潜在因素。因子-1在表儿茶素,伞形酮和山emp酚上的最大负载量。没食子酸和儿茶素对因子2的最大负载。因子3在绿原酸和槲皮素上的最大负载,而因子4在香豆酸上的最大负载。

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