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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Enhanced plumbagin accumulation in embryogenic cell suspension cultures of Plumbago rosea L. following elicitation
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Enhanced plumbagin accumulation in embryogenic cell suspension cultures of Plumbago rosea L. following elicitation

机译:诱导后增强了白花成虫细胞悬浮培养物中的铅蛋白积累

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摘要

This study focused on enhancing the production of plumbagin, an anticancer compound, in embryogenic cell suspension cultures of Plumbago rosea. Elicitation techniques have been reported to enhance plumbagin production. Cell suspension cultures raised from embryogenic calli induced from in vitro leaf explants were exposed to different concentrations of jasmonic acid, yeast extract and different auxin combinations. Influence of these on cell growth, biomass and plumbagin production was studied. To our knowledge this is the first report on elicitation of embryogenic cell suspension cultures of P. rosea for enhanced plumbagin production. Elicitor treated suspension cultures exhibited decreased culture viability and increased plumbagin synthesis. A maximum of 5.59-fold enhancement of plumbagin production was observed in cultures added with 1 mg L-1 naphthalene acetic acid after 6 days of incubation. Viability of cultures decreased with increased concentration of elicitors and prolonged incubation period. Application of elicitors in cell suspension cultures induces defense related responses which lead to increased secondary metabolite production for making the cells adapt to the situation. If the stressed condition persists or is in intolerable level this will eventually lead to programmed cell death and loss of culture viability.
机译:这项研究的重点是在玫瑰花的胚胎发生细胞悬浮培养物中增强抗癌化合物plumbagin的产生。据报道,催眠技术可提高青瓜素的产量。从体外叶片外植体诱导的胚性愈伤组织培养的细胞悬浮培养物暴露于不同浓度的茉莉酸,酵母提取物和不同的生长素组合物中。研究了它们对细胞生长,生物量和铅蛋白产生的影响。据我们所知,这是首次报道了玫瑰蔷薇的胚发生细胞悬浮培养物的诱导,以提高羽扇豆的产量。经激子处理的悬浮培养物表现出降低的培养力和增加的铅皮素合成。温育6天后,在添加了1 mg L-1萘乙酸的培养物中观察到最多增加5.59倍的plumbagin产量。培养物的活力随着激发子浓度的增加和潜伏期的延长而降低。激发子在细胞悬浮培养物中的应用诱导防御相关反应,从而导致次级代谢产物产生增加,从而使细胞适应情况。如果压力持续存在或处于无法忍受的水平,则最终将导致程序性细胞死亡和培养物活力丧失。

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