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A novel co-culture system of adventitious roots of Echinacea species in bioreactors for high production of bioactive compounds

机译:生物反应器中六锥菌种类的一种新型共培养系统,用于高产生物活性化合物

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To efficiently produce bioactive compounds of Echinacea via adventitious root (AR) culture, we established an AR co-culture system of Echinacea species. ARs of different combination of Echinacea species [E. pallida (Epa), E. purpurea (Epu), and E. angustifolia (Ean)] were inoculated into 5 L balloon-type airlift bioreactors to select a suitable combination group. The biomass of ARs increased in the Epa+Epu group but decreased in co-culture groups of Epa+Ean and Epa+Epu+Ean. In the Epa+Epu group, the content and productivity of total phenolics, flavonoids, and caffeic acid derivatives increased, a monomer of caffeic acid derivatives (caffeic acid) that is absent in single-species cultures (Epa or Epu) were synthesized; moreover, Epa+Epu also showed the highest antioxidant activity. The inoculum proportions in Epa+Epu significantly influenced the co-culture effect; among the proportion groups (Epa:Epu = 1:6, 2:5, 3:4, 1:1, 4:4, 5:2, and 6:1), the Epa:Epu proportion of 4:3 was the most favorable for AR biomass and bioactive compound accumulation, and the antioxidant activity also peaked at 4:3 proportion. In addition, the co-culture system is suitable for large bioreactors (10 and 20 L), wherein the AR biomass increased without a decrease in the amount of bioactive compounds. A co-culture system was thus successfully established in this study, and AR cultures are expected to be used as an alternative raw material for the production of Echinacea-derived products.
机译:通过不定根(AR)培养有效地生产海胆稀疏的生物活性化合物,我们建立了紫锥痤疮物种的AR共培养体系。海胆物种不同组合的ARS [E. Pallida(EPA),E.Purpurea(EPU)和E.Angustifolia(EAN)]接种到5L气球型空运生物反应器中,选择合适的组合组。 ARS的生物量在EPA + EPU组中增加,但在EPA + EAN和EPA + EPU + EAN的共同培养基中减少。在EPA + EPU组中,总酚类,黄酮类化合物和咖啡酸衍生物的含量和生产率增加,合成单物质培养物(EPA或EPU)中不存在的咖啡酸衍生物(咖啡酸)的单体;此外,EPA + EPU还显示出最高的抗氧化活性。 EPA + EPU的接种比例显着影响了共同培养效果;在比例组中(EPA:EPU = 1:6,2:5,3:4,1:1,4:4,5:2和6:1),EPA:EPU比例为4:3是最有利的是Ar生物质和生物活性化合物积累,抗氧化活性也在4:3比例下达到峰值。此外,共培养系统适用于大型生物反应器(10和20L),其中Ar生物质增加而不会降低生物活性化合物的量。因此,在本研究中成功地建立了共培养系统,并且预计Ar培养物将用作替代原料的替代原料,用于生产海胆衍生的产物。

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