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赤霉素可提高松果菊发根细胞中次生代谢产物的产量。

Gibberellic acid increases secondary metabolite production in Echinacea purpurea hairy roots.

机构信息

National Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.

出版信息

Appl Biochem Biotechnol. 2012 Dec;168(7):2057-66. doi: 10.1007/s12010-012-9917-z. Epub 2012 Oct 18.

Abstract

Gibberellic acid (GA(3)) is reported to have diverse effects on hairy root cultures of many plant species; therefore, the effects of GA(3) on the growth, secondary metabolite production (caffeic acid derivatives and lignin), phenylalanine ammonia lyase (PAL) activity, and free radical scavenging activity of light-grown Echinacea purpurea L. hairy roots were investigated. Eight concentrations of GA(3), ranging from 0.005 to 1.0 μM, were added to shake flask cultures. The moderate GA(3) concentration, 0.025 μM, resulted in the highest concentrations of cichoric acid, caftaric acid, and chlorogenic acid, as well as increased PAL activity, cell viability, and free radical scavenging activity, while higher and lower GA(3) concentrations resulted in reduced levels compared to the control (lacking GA(3)). The moderate GA(3) concentration also affected root morphogenesis; supplementation with 0.025 μM GA(3) resulted in the development of thick, dense, purple-colored roots, while roots exposed to the higher and lower concentrations of GA(3) were thin and off-white. This study demonstrates that supplementation with GA(3) may be an excellent strategy to optimize the production of secondary metabolites from E. purpurea hairy root cultures; however, the GA(3) concentration is a critical factor.

摘要

赤霉素(GA(3))被报道对许多植物物种的毛状根培养物具有多种作用;因此,研究了 GA(3)对光培养的紫锥菊毛状根的生长、次生代谢产物生产(咖啡酸衍生物和木质素)、苯丙氨酸解氨酶(PAL)活性和自由基清除活性的影响。添加了 8 种浓度范围为 0.005 至 1.0 μM 的 GA(3)到摇瓶培养物中。适度的 GA(3)浓度 0.025 μM 导致咖啡酸、卡塔酸和绿原酸的浓度最高,同时还增加了 PAL 活性、细胞活力和自由基清除活性,而较高和较低的 GA(3)浓度与对照(缺乏 GA(3))相比,水平降低。适度的 GA(3)浓度还影响根形态发生;用 0.025 μM GA(3)补充可导致厚而密的紫色根的发育,而暴露于较高和较低 GA(3)浓度的根则较薄且呈灰白色。本研究表明,GA(3)的补充可能是优化紫锥菊毛状根培养物中次生代谢产物生产的绝佳策略;然而,GA(3)浓度是一个关键因素。

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