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Low dose gamma radiation increases the biomass and ginsenoside content of callus and adventitious root cultures of wild ginseng (Panax ginseng Mayer)

机译:低剂量γ辐射增加野生人参(Panax人参市)的愈伤组织和不定根培养的生物质和人参皂苷含量

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Mountain ginseng (Panax giaseng Mayer) is known as the most valuable herb around the world. Several biotechnological tools have been developed to enhance the production of secondary metabolites in medicinal plants, especially mountain ginseng. Mutagenesis is used to create desirable mutations at the genetic level. Among several energy sources used in mutant breeding programs, gamma rays are considered the most common and efficient tool for mutagenesis. Gamma rays are preferred over other energy sources because of convenient operation, short cycle, and high mutation frequency. In this study, gamma rays were used to generate mutant adventitious root lines of P. ginseng with high biomass and ginsenoside content. Callus and adventitious root cultures of P. ginseng, which were in culture short-term (1 year) and long-term (20 years), were irradiated with various doses of gamma rays. Exposure to higher doses of gamma rays caused necrosis in long-term explants. Four mutant lines of adventitious roots were identified with unique RAPD markers using eight primers. The genetic similarity among mutant lines ranged from 0.67 to 0.96. We also analyzed the total ginsenoside content and levels of 12 individual ginsenosides using HPLC analysis. The total ginsenoside content was 4.2-fold higher in mutant lines than in the control. The mutant line 1G-20-19 showed the highest ginsenoside content compared with the untreated control and other mutant lines. Overall, mutant lines of adventitious roots by gamma ray treatments in this study represent good candidates for commercial production of ginsenosides.
机译:Mountain Ginseng(Panax Giaseng Mayer)被称为世界上最有价值的草药。已经开发了几种生物技术工具,以增强药用植物中次生代谢物的产生,尤其是山羊。诱变用于在遗传水平下产生所需的突变。在突变育种计划中使用的几种能源中,伽马射线被认为是最常见和最有效的诱变工具。由于操作方便,短循环和高突变频率,伽马射线是优选的其他能源。在这项研究中,使用高生物量和人参皂苷含量产生γ射线产生突变体偶然根线的突变体偶然根线。在短期(1年)和长期(20年)中,愈伤组织和不定根培养物的愈伤组织和不定根培养物与各种剂量的γ射线照射。暴露于较高剂量的γ射线导致长期外植体的坏死。使用八个引物用独特的RAPD标记鉴定出四种不定根的突变线。突变线之间的遗传相似性范围为0.67至0.96。我们还通过HPLC分析分析了总青少年皂苷含量和12个单个人参皂苷的水平。突变线的总青少核苷酸含量比对照在突变体中高4.2倍。突变线1G-20-19显示与未处理的对照和其他突变线相比的人参皂苷含量最高。总体而言,本研究中的伽马射线治疗的不定根突变线代表了人参皂苷的商业生产的良好候选者。

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