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首页> 外文期刊>Biotechnology and Applied Biochemistry >Assessment of genetic fidelity and composition: Mixed elicitors enhance triterpenoid and flavonoid biosynthesis of Glycyrrhiza uralensis Fisch tissue cultures
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Assessment of genetic fidelity and composition: Mixed elicitors enhance triterpenoid and flavonoid biosynthesis of Glycyrrhiza uralensis Fisch tissue cultures

机译:遗传保真度和组成的评估:混合诱导子增强了乌拉甘草 Fisch 组织培养物的三萜类化合物和类黄酮生物合成

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摘要

Glycyrrhiza uralensis has acquired significant importance due to its medicinal properties and health function. In this study, the quality of G. uralensis adventitious roots was evaluated in terms of genetic stability, active compounds, and anti-inflammatory activity. Monomorphic banding pattern obtained from the mother plant and tissue cultures of G. uralensis with randomly amplified polymorphic DNA markers confirmed the genetic stability of adventitious roots. Neoliquiritin (neoisoliquiritin), ononin, liquiritin, and glycyrrhizic acid were identified from G. uralensis adventitious roots on the basis of high-performance liquid chromatography-electrospray ionization-tandem mass spectrometry analysis. This study also revealed that adventitious roots possessed a better anti-inflammatory effect than native roots. To increase the contents of G. uralensis active components, elicitors were used in the adventitious roots culture. The combination of methyl jasmonate and phenylalanine synergistically stimulated the accumulation of glycyrrhetinic acid (0.22 mg/g) and total flavonoid (5.43 mg/g) compared with single treatment. In conclusion, G. uralensis adventitious roots can be an exploitable system for the production of licorice. (C) 2016 International Union of Biochemistry and Molecular Biology, Inc.
机译:Glycyrrhiza uralensis因其药用特性和健康功能而具有重要意义。本研究从遗传稳定性、活性化合物和抗炎活性等方面对蛤蜊不定根的质量进行了评价。从母株和组织培养物中获得的具有随机扩增的多态性DNA标记的单态条带模式证实了不定根的遗传稳定性。采用高效液相色谱-电喷雾电离-串联质谱分析,鉴定出新寡草素(neoisoliquiritin)、阳酸、甘草酸和甘草酸。这项研究还表明,不定根比天然根具有更好的抗炎作用。为了增加G. uralensis活性成分的含量,在不定根培养中使用了诱导剂。与单药治疗相比,茉莉酸甲酯与苯丙氨酸的协同刺激甘草次酸(0.22 mg/g)和总黄酮(5.43 mg/g)的积累。总之,G. uralensis不定根可以成为生产甘草的可利用系统。(C) 2016 国际生物化学与分子生物学联合会

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