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In vitro cultivation of hairy roots of Plumbago rosea L. in a customized Reaction kettle for the production of plumbagin-An anticancer compound

机译:在定制的反应釜中对白花胡椒毛状根进行体外培养,以生产plumbagin-抗癌化合物

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Biosynthesis of plumbagin using hairy root cultures of Plumbago rosea L. can be made economical only by scaling-up cultures in suitable vessels under conditions optimal for maximum yield of biomass and plumbagin. However, the major limitation faced in the scaling-up of hairy roots is the development of appropriate culture vessels that will allow maximum growth of interconnected root mat with less shear stress. Design of economical and low energy requiring scaling-up culture system for hairy roots with emphasis on physical parameters like inoculum state, nutrient mixing, aeration, inoculum support etc., is very important for root cultures. A novel, culture vessel model using a Reaction kettle (2 L) was attempted for successful scaling-up of P. rosea hairy roots. The roots cultured in Murashige and Skoog basal liquid medium for 25 days in a Reaction kettle (2 L) customized with a polypropylene mesh for support and a fish tank aerator for aeration yielded maximum biomass and plumbagin. Twelve-fold increase in root biomass with highest plumbagin content of 1.5% dry weight (DW) was obtained in Reaction kettle whereas, shake flask cultures produced only five fold biomass enhancement with 1.1% DW plumbagin. The present experiments demonstrated the suitability of the customized Reaction kettle with adequate filtered air for the scaling-up of hairy root cultures for secondary metabolite production. This is the first report on exploiting a Reaction kettle for in vitro scaling-up of organ cultures. (C) 2016 Elsevier B.V. All rights reserved.
机译:仅通过在合适的容器中按比例放大培养物,以最佳的生物量和李白蛋白的最大产量,才能使使用白头翁的毛状根培养物进行李白蛋白的生物合成经济。但是,在毛状根的按比例放大过程中面临的主要限制是开发合适的培养容器,该容器将允许互连的根垫最大生长且剪切应力较小。设计经济,低能耗,需要扩大毛状根的培养系统,并着重于诸如接种状态,养分混合,通气,接种支持等物理参数,对于根培养非常重要。尝试使用反应釜(2 L)建立新颖的培养皿模型,以成功放大玫瑰蔷薇毛状根。在Murashige和Skoog基础液体培养基中的根部在反应釜(2 L)中培养25天,该釜采用聚丙烯网(用于支撑)和鱼缸曝气机(用于曝气)定制,可产生最大的生物量和铅皮。在反应釜中根部生物量最高的羽衣甘蓝含量为1.5%干重(DW)时,根部生物量增加了12倍,而摇瓶培养物在1.1%DW羽衣甘蓝中仅产生了5倍的生物量增强。本实验证明了定制反应釜与足够的过滤空气适用于按比例放大毛根培养物以产生次级代谢产物。这是关于利用反应釜体外扩大器官培养物的第一个报道。 (C)2016 Elsevier B.V.保留所有权利。

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