首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Optimization of culture medium components and culture period for production of adventitious roots of Echinacea pallida (Nutt.) Nutt
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Optimization of culture medium components and culture period for production of adventitious roots of Echinacea pallida (Nutt.) Nutt

机译:优化培养基培养基组分及培养期赤素酸盐(Nutt.)Nutt

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摘要

To optimize the culture medium for adventitious root (AR) culture of Echinacea pallida, the nitrogen, phosphorus, and sucrose with their different concentrations were combined by using the uniform design method in AR suspension culture. The maximum AR dry weight (5.2gL(-1)), phenolic (57.3mgg(-1)), and flavonoid (40.8mgg(-1)) contents were determined when AR culture medium of the three-quarter strength Murashige and Skoog medium contained 45mM nitrogen and 1.56mM phosphorus and was supplemented with 50gL(-1) sucrose and 1mgL(-1) indole-3-butyric acid. Productivities of phenolics and flavonoids of ARs reached 297.9 and 211.9mgL(-1), respectively. The optimized culture medium was used in the AR bioreactor culture. The kinetic study was conducted to select a suitable culture period. When ARs were cultured in a 5-L air-lift bioreactor for 30days, the accumulation of AR biomass (76.1gL(-1) fresh weight and 7.5gL(-1) dry weight) and bioactive compounds (53.5mgg(-1) phenolics and 37.6mgg(-1) flavonoids) reached the maximum values, and the productivities of phenolics and flavonoids were 398.7 and 280.4mgL(-1), respectively. The bioreactor-cultured AR extracts at 0.8-1.4mgL(-1) inhibited tyrosinase activity, revealing that E. pallida ARs can potentially block melanin formation. Thus, E. pallida ARs has a feasible alternative plant material to be used in the industrial production of whitening cosmetic products.
机译:为了优化紫外线磷酸钯的不定根(AR)培养的培养基,通过使用Ar悬浮培养中的均匀设计方法来组合氮,磷和蔗糖的培养基,氮,磷和蔗糖与其不同浓度合并。当三分之三强度Murashige和Skoog的AR培养基时,确定最大Ar干重(5.2gl(-1)酚醛(57.3mg(-1))和黄酮类(40.8mgg(-1))含量介质含有45mm氮气和1.56mm磷,并补充有50gl(-1)蔗糖和1mgL(-1)吲哚-3-丁酸。酚酚类和类黄酮的产品分别达到297.9和211.9mg1(-1)。优化的培养基用于AR生物反应器培养物。进行动力学研究以选择合适的培养期。当ARS在5-L空气升降生物反应器中培养30天时,AR生物质的积累(76.1gl(-1)鲜重量和7.5g1(-1)干重)和生物活性化合物(53.5mgg(-1)酚类和37.6mgg(-1)类黄酮类别达到最大值,酚类和黄酮类化合物的产品分别为398.7和280.4mg(-1)。培养的生物反应器培养的Ar提取物在0.8-1.4mg1(-1)抑制酪氨酸酶活性,揭示了E.Pallida Ars可能会阻止黑色素形成。因此,E.Pallida ARS具有可行的替代植物材料,用于在美白化妆品的工业生产中使用。

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