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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Influence of inoculum density and aeration volume on biomass and bioactive compound production in bulb-type bubble bioreactor cultures of Eleutherococcus koreanum Nakai
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Influence of inoculum density and aeration volume on biomass and bioactive compound production in bulb-type bubble bioreactor cultures of Eleutherococcus koreanum Nakai

机译:接种量和曝气量对南朝鲜肠球菌球型气泡生物反应器培养物中生物量和生物活性化合物产生的影响

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This study deals with the effects of initial inoculum density and aeration volume on biomass and bioactive compound production in adventitious roots of Eleutherococcus koreanum Nakai in bulb-type bubble bioreactors (3-L capacity). While the fresh and dry weights of the roots increased with increasing inoculum density, the highest percentage dry weight and accumulation of total target compounds (eleutheroside B and E, chlorogenic acid, total phenolics, and flavonoids) were noted at an inoculum density of 5.0gL~(-1). Poor aeration volume (0.05vvm) stunted root growth, and high aeration volume (0.4vvm) caused physiological disorders. Moreover, an inoculum density of 5.0gL~(-1) and an aeration volume of 0.1vvm resulted in the highest concentration of total target compounds and least root death. Such optimization of culture conditions will be beneficial for the large-scale production of E. koreanum biomass and bioactive compounds.
机译:这项研究涉及初始球菌密度和通气量对球茎型气泡生物反应器(3-L容量)中韩国大肠球菌不定根中生物量和生物活性化合物产生的影响。虽然根的鲜重和干重随接种密度的增加而增加,但在5.0gL的接种密度下,最高的干重百分比和总目标化合物(芥子苷B和E,绿原酸,总酚类和类黄酮)的积累最高〜(-1)。通气量(0.05vvm)差会阻碍根系生长,高通气量(0.4vvm)会引起生理障碍。此外,接种密度为5.0gL〜(-1),通气量为0.1vvm时,总目标化合物的浓度最高,而根死亡则最少。培养条件的这种优化对于大规模生产朝鲜蓟生物质和生物活性化合物将是有益的。

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