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Caffeoyl phenols and alkamides of cultivated Echinacea purpurea and Echinacea atrorubens var. paradoxa

机译:栽培紫锥菊和紫锥菊变种咖啡因中的咖啡酰酚和链酰胺。悖论

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Echinacea purpurea (L.) Moench was recently introduced into Taiwan. In the present study, the biomass, the contents of caffeoyl phenols, and the content of dodeca-2?,4?,8Z,10?-tetraenoic acid isobutylamide plus dodeca-2?,4?,8Z,10Z-tetraenoic acid isobutylamide (alkamides 8 and 9 respectively,) of locally selected line CLS-P2 and two introduced cultivars Magnus and White Swan of ?. purpurea and an introduced ?. atrorubens var. paradoxa were compared. The results indicated that both biomass and phytoactive constituents varied considerably among the introduced cultivars and selected line. Line CLS-P2 grew better and produced more aerial and ground parts than introduced cultivars Magnus and White Swan. It also produced more caffeoyl phenols, particularly cichoric acid and caftaric acid in its leaves than Magnus and White Swan. All the ?. purpurea cultivars and line produced same amounts of alkamides 8 and 9 in their flower heads and leaves. But White Swan produced more alkamides 8 and 9 in its roots than CLS-P2 and Magnus. Line CLS-P2 was less homogenous in genetic background as compared to the introduced cultivars. ? atrorubens var. paradoxa also grew well in Taiwan, but it produced less aerial and ground dry mass than ? purpurea. E. atrorubens var. paradoxa produced more echinacoside in its flower heads, leaves, and root parts, while ? purpurea plants had more cichoric acid and caftaric acid in their flower heads and leaves. ?. atrorubens var. paradoxa also produced more alkamides 8 and 9 in flower heads and leaves, while ?. purpurea produced more alkamides 8 and 9 in roots.
机译:紫锥菊(L.)Moench最近被引入台湾。在本研究中,生物量,咖啡酰酚的含量以及十二碳-2?,4?,8Z,10?-四烯酸异丁酰胺加十二碳-2?,4?,8Z,10Z-四烯酸异丁酰胺的含量(分别为酰胺8和9)的本地选择系CLS-P2和两个引入的栽培品种Magnus和White Swan。 purpurea和介绍的?。阿trorubens变种比较了悖论。结果表明,在引进的品种和选育系中,生物量和植物活性成分均存在较大差异。与引进品种Magnus和White Swan相比,CLS-P2系生长更好,产生的地面和地面部分更多。与马格努斯和白天鹅相比,它在叶片中还产生更多的咖啡酰酚,尤其是胆酸和咖啡酸。所有 ?。紫花品种和品系在它们的头状花序和叶片中产生了相同量的烷酰胺8和9。但是,白天鹅在其根部比CLS-P2和Magnus产生更多的烷酰胺8和9。与导入的品种相比,CLS-P2品系的遗传背景同源性较低。 ?阿trorubens变种台湾的悖论生长也很好,但产生的地面和地面干物质少于紫癜。铜绿假单胞菌悖论在其头状花序,叶子和根部产生了更多的紫锥花苷,而?紫花植物的头状花序和叶子中含有更多的chochoricic acid和caftaric acid。 ?阿trorubens变种悖论在头花和叶中还产生更多的链烷酰胺8和9,而α。紫癜在根部产生更多的烷酰胺8和9。

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