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首页> 外文期刊>Acta Horticulturae >Comparison of growth and secondary metabolite accumulation in cultures of compact callus aggregates and shoots of Hypericum perforatum L. in shake flasks and in a bubble column bioreactor.
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Comparison of growth and secondary metabolite accumulation in cultures of compact callus aggregates and shoots of Hypericum perforatum L. in shake flasks and in a bubble column bioreactor.

机译:比较紧凑的愈伤组织聚集体和贯叶连翘在摇瓶和气泡柱生物反应器中的生长和次生代谢产物的积累。

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摘要

Hypericum perforatum L. is a traditional medicinal plant that has been used for the treatment of depression. Cultures of compact callus aggregates (CCA) and shoots were established to investigate production of hypericin, pseudohypericin and hyperforin in highly and partly differentiated tissues of H. perforatum L., as well as accumulation of biomass during cultivation in shake flasks and in a bubble column bioreactor. Shoots were cultivated in MS liquid medium supplemented with 0.1 mg L-1 benzyladenine (BA) and CCA cultures in MS medium containing 0.5 mg L-1 BA and 1.0 mg L-1 2,4-dichlorophenoxyacetic acid (2,4-D). The shoot cultures showed faster accumulation of biomass compared to cultures of CCA in shake flasks and also in a bubble column bioreactor. The growth of both cultures was faster in bioreactor compared to that in shake flasks. A linear correlation between the biomass accumulation and the medium osmolarity obtained for both cultures in shake flasks was successfully used for indirect monitoring of biomass accumulation in a bubble column bioreactor. The HPLC-analyses showed shoot cultures to be superior as extraction material for hypericin, pseudohypericin and hyperforin compared to CCA and the concentrations of these metabolites in shoot cultures were higher in bubble column bioreactor than in shake flasks..
机译:贯叶连翘是一种传统的药用植物,已被用于治疗抑郁症。建立紧密愈伤组织聚集体(CCA)和芽的培养物,以研究高通量和部分分化的贯叶连翘组织中金丝桃素,假高丝素和金丝桃素的产生,以及在摇瓶和气泡柱中培养过程中生物量的积累生物反应器。在补充有0.1 mg L-1苄基腺嘌呤(BA)的MS液体培养基中培养枝条,并在含有0.5 mg L-1 BA和1.0 mg L-1 2,4-二氯苯氧基乙酸(2,4-D)的MS培养基中培养CCA培养物。 。与CCA在摇瓶和鼓泡塔生物反应器中的培养相比,芽培养物显示出更快的生物质积累。与摇瓶相比,生物反应器中两种培养物的生长都更快。两种培养物在摇瓶中获得的生物质积累与介质渗透压之间的线性相关性已成功用于间接监测鼓泡塔生物反应器中生物质的积累。 HPLC分析显示,与CCA相比,芽苗培养物作为金丝桃素,假高丝菌素和金丝桃素的提取材料更为出色,泡罩式生物反应器中芽培养物中这些代谢物的浓度高于摇瓶。

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