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冠菌素在……细胞悬浮培养中增强皂苷的生物合成。 (原文句末不完整,缺少具体植物名称等关键信息)

Enhanced biosynthesis of saponins by coronatine in cell suspension culture of .

作者信息

Lee Jae Kook, Eom Seung Hee, Hyun Tae Kyung

机构信息

Department of Industrial Plant Science and Technology, College of Agricultural, Life and Environmental Sciences, Chungbuk National University, Cheongju, 28644 Republic of Korea.

出版信息

3 Biotech. 2018 Jan;8(1):59. doi: 10.1007/s13205-018-1090-9. Epub 2018 Jan 10.

Abstract

is a medicinal woody species of the family Araliaceae, and the pharmaceutical properties of saponins obtained from . suggest that . has the potential to be a crude drug and dietary health supplement. In this study, we established cell suspension culture of . to develop a sustainable source of natura-ceuticals. Friable calli were used for establishing cell suspension culture. The maximum amount of total saponins (1.56 mg/60 ml suspension) was obtained during the 15th day of incubation, whereas the maximum capacity of saponin production was reached after day 6 (0.42 μg/mg of fresh weight). The total saponin production in the cell suspension of . was significantly increased by coronatine (COR) at 160% at a dose of 1 μM compared with the mock-treated control, whereas methyl jasmonate treated cells exhibited less increase in total saponin level as compared to the COR-treated cells. In addition, the elicitation of COR strongly induced the expression of beta-amyrin synthase, thus resulting in the accumulation of oleanolic acid (2.369 ± 0.98 μg/mg of extract), a precursor for oleanane-type triterpene saponins. These results indicate that COR is an efficient elicitor for inducing phytochemicals in cell suspension culture and that it provides the possibility for producing saponins of . using cell suspension culture.

摘要

是五加科的一种药用木本植物,从其获得的皂苷的药用特性表明,它有潜力成为一种天然药物和膳食健康补充剂。在本研究中,我们建立了该植物的细胞悬浮培养体系,以开发一种可持续的天然药物来源。使用易碎愈伤组织建立细胞悬浮培养体系。在培养的第15天获得了最大量的总皂苷(1.56毫克/60毫升悬浮液),而皂苷生产的最大能力在第6天后达到(0.42微克/毫克鲜重)。与模拟处理的对照相比,在1微摩尔剂量下,冠菌素(COR)使该植物细胞悬浮液中的总皂苷产量显著提高了160%,而茉莉酸甲酯处理的细胞与COR处理的细胞相比,总皂苷水平的增加较少。此外,COR的诱导强烈诱导了β-香树脂醇合酶的表达,从而导致齐墩果酸(2.369±0.98微克/毫克提取物)的积累,齐墩果酸是齐墩果烷型三萜皂苷的前体。这些结果表明,COR是细胞悬浮培养中诱导植物化学物质的有效诱导剂,并且它为使用细胞悬浮培养生产该植物的皂苷提供了可能性。

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