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Quinic acids from Aster caucasicus and from transgenic callus expressing a β-amyrin synthase

机译:来自Aster caucasicus和表达β-amyrin合酶的转基因愈伤组织的奎尼酸

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摘要

Several different classes of secondary metabolites, including flavonoids, triterpenoid saponins and quinic acid derivatives, are found in Aster spp. (Fam. Asteraceae). Several Aster compounds revealed biological as well as pharmacological activities. In this work, a phytochemical investigation of A. caucasicus evidenced the presence of quinic acid derivatives, as well as the absence of triterpene saponins. To combine in one species the production of different phytochemicals, including triterpenes, an Agrobacterium-mediated transformation of A. caucasicus was set up to introduce A. sedifolius β-amyrin synthase (AsOXA1)-encoding gene under the control of the constitutive promoter CaMV35S. The quali-quantitative analysis of transgenic calli with ectopic expression of AsOXA1 showed, in one sample, a negligible amount of triterpene saponins combined with higher amount of quinic acid derivatives as compared with the wild type callus.
机译:在紫ster属植物中发现了几种不同类型的次级代谢产物,包括类黄酮,三萜类皂苷和奎尼酸衍生物。 (家族。菊科)。几种紫苑化合物具有生物学和药理活性。在这项工作中,对高加索曲霉的植物化学研究证明了奎尼酸衍生物的存在,以及三萜皂苷的存在。为了在一个物种中结合生产不同的植物化学物质,包括三萜,建立了农杆菌介导的高加索曲霉转化,以在组成型启动子CaMV35S的控制下引入sedifoliusβ-淀粉糊精合酶(AsOXA1)编码基因。在一个样品中,异位表达AsOXA1的转基因愈伤组织的定性分析表明,与野生型愈伤组织相比,三萜皂角苷的含量可忽略不计,而奎宁酸衍生物的含量却更高。

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