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首页> 外文期刊>Plant Cell Reports >Plant regeneration of Erigeron breviscapus (vant.) Hand. Mazz. and its chromatographic fingerprint analysis for quality control
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Plant regeneration of Erigeron breviscapus (vant.) Hand. Mazz. and its chromatographic fingerprint analysis for quality control

机译:灯盏花手(Erigeron breviscapus)的植物再生。马兹及其色谱指纹图谱分析以进行质量控制

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An efficient micropropagation system for Erigeron breviscapus (vant.) Hand. Mazz., an important medicinal plant for heart disease, has been developed. Shoot organogenesis occurred from E. breviscapus leaf explants inoculated on a medium supplemented with a combination of plant growth regulators. On average, 17 shoots per leaf explant were produced after 30 days when they were cultured on MS basal salts and vitamin medium containing 5 muM 6-benzylaminopurine (BAP) and 5 muM 1-naphthaleneacetic acid (NAA). All the regenerated shoots formed complete plantlets on a medium containing 2.5-10 muM indole-3-butyric acid (IBA) within 30 days, and 80.2% of the regenerated plantlets survived and grew vigorously in field conditions. Based on the variation in common peaks and the produced amount of the most important bioactive component, scutellarin, a high performance liquid chromatography (HPLC) fingerprinting system was developed for quality control of these micropropagated plants. Chemical constituents in E. breviscapus micropropagated plants varied during plant development from regeneration to maturation, the latter of which showed the most similar phytochemical profile in comparison with mother plants. The regeneration protocol and HPLC fingerprint analysis developed here provided a new approach to quality control of micropropagated plants producing secondary metabolites with significant implications for germplasm conservation.
机译:一种有效的灯盏花手足微繁殖系统。已经开发出用于心脏病的重要药用植物马兹。幼芽器官发生发生于在添加了植物生长调节剂的培养基上接种的灯盏花短肠外植体。在30天后,将它们在MS基础盐和含有5μM6-苄基氨基嘌呤(BAP)和5μM1-萘乙酸(NAA)的维生素培养基上培养后,平均每片叶子外植体产生17个芽。所有再生芽均在30天内在含有2.5-10μM吲哚-3-丁酸(IBA)的培养基上形成完整的幼苗,并且80.2%的再生幼苗在田间条件下存活并生长旺盛。基于共同峰的变化和最重要的生物活性成分黄cut苷的生成量,开发了一种高效液相色谱(HPLC)指纹图谱系统,用于这些微繁植物的质量控制。在从再生到成熟的整个植物发育过程中,灯盏花微繁殖植物的化学成分各不相同,与母本植物相比,后者的植物化学特征最为相似。此处开发的再生方案和HPLC指纹图谱分析提供了一种新方法,可用于微繁殖植物的质量控制,这些植物产生次生代谢产物,对种质保护具有重要意义。

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