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首页> 外文期刊>Journal of Bioscience and Bioengineering >Production of biomass and bioactive compounds from adventitious roots by optimization of culturing conditions of Eurycoma longifolia in balloon-type bubble bioreactor system
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Production of biomass and bioactive compounds from adventitious roots by optimization of culturing conditions of Eurycoma longifolia in balloon-type bubble bioreactor system

机译:优化球囊型气泡生物反应器系统中长生杜仲的培养条件,从不定根生产生物质和生物活性化合物

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The present study aimed to optimize the conditions for the production of adventitious roots from Einycoma longifolia Jack, an important medicinal woody plant, in bioreactor culture. The effects of the type and concentration of auxin on root growth were studied, as well as the effects of the NH4+:NO3- ratio on adventitious root growth and the production of phenolics and flavonoids. Approximately 5 g L-1 fresh weight of adventitious roots was inoculated into a 3 L balloontype bubble bioreactor, which contained 2 L 3/4 MS medium supplemented with 30 g L-1 sucrose and cultures were maintained in the dark for 7 weeks at 24 +/- 1 degrees C. Higher concentrations of IBA (7.0 and 9.0 mg L-1) and NAA (5.0 mg L-1) enhanced the biomass and accumulation of total phenolics and flavonoids. The adventitious roots were thin, numerous, and elongated in 3/4 MS medium supplemented with 5.0 and 7.0 mg L-1 IBA, whereas the lateral roots were shorter and thicker with 5.0 mg L-1 NAA compared with IBA treatment. The optimum biomasses of 50.22 g L-1 fresh weight and 4.60 g L-1 dry weight were obtained with an NH4+:NO3- ratio of 15:30. High phenolic and flavonoid productions (38.59 and 11.27 mg L-1 medium, respectively) were also obtained with a ratio of 15:30. Analysis of the 2,2-diphenyl-1-picrylhydrazyl (DPPH)-scavenging activity indicated higher antioxidant activity with an NH4+:NO3- ratio of 30:15. These results suggest that balloon-type bubble bioreactor cultures are suitable for the large-scale commercial production of E. longifolia adventitious roots which contain high yield of bioactive compounds. (C) 2014, The Society for Biotechnology, Japan. All rights reserved.
机译:本研究旨在优化在生物反应器培养中从重要药用木本植物长叶艾美氏菌产生不定根的条件。研究了生长素的类型和浓度对根系生长的影响,以及NH4 +:NO3-比对不定根生长以及酚类和类黄酮生成的影响。将约5 g L-1新鲜重量的不定根接种到3 L球囊型气泡生物反应器中,该反应器包含2 L 3/4 MS培养基,其中补充了30 g L-1蔗糖,将培养物在24的黑暗环境中保持7周+/- 1摄氏度。更高浓度的IBA(7.0和9.0 mg L-1)和NAA(5.0 mg L-1)提高了生物质以及总酚和类黄酮的积累。在补充有5.0和7.0 mg L-1 IBA的3/4 MS培养基中,不定根较细,多且拉长,而与IBA处理相比,用5.0 mg L-1 NAA的侧根更短,更粗。在NH4 +:NO3-的比例为15:30的情况下,获得了50.22 g L-1新鲜重量和4.60 g L-1干重量的最佳生物量。还以15:30的比例获得了较高的酚类和类黄酮产量(分别为38.59和11.27 mg L-1培养基)。对2,2-二苯基-1-吡啶并肼基(DPPH)清除活性的分析表明,NH4 +:NO3-比为30:15时具有更高的抗氧化活性。这些结果表明,气球型气泡生物反应器培养物适用于大规模商业生产的E.longifolia不定根,其含有高产率的生物活性化合物。 (C)2014,日本生物技术学会。版权所有。

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