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Identification of secondary metabolites in Tripterygium wilfordii hairy roots and culture optimization for enhancing wilforgine and wilforine production

机译:近代代谢产物近紫外线毛发根系及培养优化,提高威尔林和威尔法林生产

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Hairy roots culture is an effective biological system to solve the shortage of natural resources of Tripterygium wilfordii for the production of the important secondary metabolites. However, there is no enough information about the secondary metabolites in Tripterygium wilfordii hairy root cultures. The present study identified the secondary metabolites in T. wilfordii hairy roots by high performance liquid chromatography-electrospray ionization mass spectrometry (HPLC-ESI-MS). Subsequently, the nitrogen source and phosphate concentration were optimized to enhance the production of the major active compounds wilforgine and wilforine. Nine compounds including triptolide, wilforgine, wilforine, and so on were identified according to their retention behavior in liquid chromatography and mass spectrometric fragmentation patterns. The Murashige and Skoog (MS) medium was modified for enhancing wilforgine and wilforine production in T. wilfordii hairy root cultures by altering the ratio of NH4+/NO3- and the concentration of phosphate. The results showed that 10:50 mM NH4+/NO3- and 0.3125 mM phosphate were optimal for roots growth and the production of wilforgine and wilforine. After 35 days of cultivation in the modified MS medium containing 10:50 mM NH4+/NO3- and 0.3125 mM phosphate, the maximum production of wilforgine and wilforine was up to 1509.87 mu g.flask(-1) and 578.56 mu g.flask(-1) in T. wilfordii hairy roots separately, a 42 % and 48 % increase over that in the basic MS medium. The present study laid a foundation for the large-scale production of secondary metabolites from T. wilfordii hairy roots.
机译:毛茸茸的根文化是一种有效的生物系统,以解决逆线威尔福德的自然资源短缺,以生产重要的次生代谢产物。然而,没有足够的信息关于逆线威尔福德毛发根培养物中的次生代谢物。本研究通过高效液相色谱 - 电喷雾电离质谱法(HPLC-ESI-MS)鉴定了T.Wilfordii毛状根的次生代谢物。随后,优化了氮源和磷酸盐浓度,以增强主要活性化合物潜水葡萄狼和威林的生产。根据液相色谱和质谱分段模式的保留行为鉴定氮素包括雷公藤内酯,威尔葡葡珊瑚硅树脂等九种化合物。通过改变NH4 + / NO3-和磷酸浓度的比例,改变Murashige和Skoog(MS)培养基以增强威尔葡萄狼和威尔葡萄牙和威尔法霉素生产。结果表明,10:50 mm NH 4 + / NO 3-和0.3125mm磷酸盐对于根系生长和威尔葡葡葡林和威芳的生产是最佳的最佳选择。在含有10:50 mm NH 4 + / NO 3-和0.3125mm磷酸盐的改性MS培养基中培养后,威尔葡葡葡葡葡葡葡聚石的最大产量高达1509.87μgflask(-1)和578.56μgFlask( -1)在T.Wilfordii毛茸茸的根部分别,在基本MS培养基中增加42%和48%。本研究为来自T.Wilfordii毛状根的次级代谢物的大规模生产奠定了基础。

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