Song Xiaolin, Wu Hao, Yin Zhenhao, Lian Meilan, Yin Chengri
Key Laboratory of Natural Resources of Changbai Mountain and Functional Molecules, Ministry of Education, Yanbian University, Yanji 133002, China.
Molecules. 2017 May 23;22(6):837. doi: 10.3390/molecules22060837.
Ginsenoside is the most important secondary metabolite of ginseng. Natural sources of wild ginseng have been overexploited. Although root culture could reduce the length of the growth cycle of ginseng, the number of ginsenosides is fewer and their contents are lower in adventitious roots of ginseng than that in ginseng cultivated in the field. In this study, we investigated the effects of endophytic bacterial elicitors on biomass and ginsenoside production in adventitious roots cultures of . Endophyte LB 5-3 as an elicitor could increase biomass and ginsenoside accumulation in ginseng adventitious root culture. After 6 days elicitation with a 10.0 mL of strain LB 5-3, the content of total ginsenoside was 2.026 mg g which was four times more than that in unchallenged roots. The combination of methyl jasmonate and strain LB 5-3 had a negative effect on ginseng adventitious root growth and ginsenoside production. The genomic DNA of strain LB 5-3 was sequenced, and was found to be most closely related to (KX230132.1). The challenged ginseng adventitious root extracts exerted inhibitory effect against the HepG2 cells, which IC value was 0.94 mg mL.
人参皂苷是人参最重要的次生代谢产物。野生人参的天然来源已被过度开发。虽然根培养可以缩短人参的生长周期,但人参不定根中人参皂苷的数量比田间种植的人参少,其含量也较低。在本研究中,我们研究了内生细菌激发子对人参不定根培养物中生物量和人参皂苷产量的影响。内生菌LB 5-3作为激发子可增加人参不定根培养物中的生物量和人参皂苷积累。用10.0 mL菌株LB 5-3诱导6天后,总人参皂苷含量为2.026 mg/g,是未处理根的四倍。茉莉酸甲酯和菌株LB 5-3的组合对人参不定根生长和人参皂苷产量有负面影响。对菌株LB 5-3的基因组DNA进行了测序,发现它与 (KX230132.1)关系最为密切。受处理的人参不定根提取物对HepG2细胞具有抑制作用,其IC值为0.94 mg/mL。