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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >In vitro cultures of Linum usitatissimum L.: Synergistic effects of mineral nutrients and photoperiod regimes on growth and biosynthesis of lignans and neolignans
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In vitro cultures of Linum usitatissimum L.: Synergistic effects of mineral nutrients and photoperiod regimes on growth and biosynthesis of lignans and neolignans

机译:Linum Usitatissimum L的体外培养物:矿物质养分和光周期制度对木质血管和新核生物合成的协同作用

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The multipurpose plant species Linum usitatissimum famous for producing linen fibre and containing valuable pharmacologically active polyphenols, has rarely been tested for it's in vitro biosynthesis potential of lignans and neolignans. The current study aims at the synergistic effects of mineral nutrients variation and different photoperiod treatments on growth kinetics and biomass accumulation in in vitro cultures of Linum usitatissimum. Both nutrient quality and quantity affected growth patterns, as cultures established on Gamborg B5 medium had comparatively long exponential phase compared to Murashige and Skoog medium, while growth was slow but steady until last phases of the culture on Schenk and Hildebrandt medium. Similarly, we observed that boron deficiency and nitrogen limitation in culture medium (Gamborg B5 medium) enhanced callus biomass (fresh weight 413 g/l and dry weight 20.7 g/l), phenolics production (667.60 mg/l), and lignan content (secoisolariciresinol diglucoside 6.33 and lariciresinol diglucoside 5.22 mg/g dry weight respectively) at 16/8 h light and dark-week 4, while that of neolignans (dehydrodiconiferyl alcohol glucoside 44.42 and guaiacylglycerol-Oconiferyl alcohol ether glucoside 9.26 mg/g dry weight, respectively) in continuous dark after 4th week of culture. Conversely, maximum flavonoids production occurred at both Murashige and Skoog, Schenk and Hildebrandt media (both media types contain comparatively higher boron and nitrogen content) in the presence of continuous light. Generally, continuous dark had no significant role in any growth associated parameter. This study opens new dimension for optimizing growing conditions and evaluating underlying mechanisms in biosynthesis of lignans and neolignans in in vitro cultures of Linum usitatissimum.
机译:用于生产亚麻纤维并含有有价值的药理学活性多酚的多用途植物物种Linum Usitatisimum很少被测试为Lignans和Neolignans的体外生物合成潜力。目前的研究旨在矿物质营养变异和不同光周期治疗Linum Usitatismum的体外培养中生长动力学和生物质积累的协同作用。与Murashige和Skoog培养基相比,营养质量和数量影响的生长模式影响着生长模式,随着Gamborg B5培养基的培养,较长的指数阶段,而生长速度缓慢但稳定直至施塞克和希尔德贝特媒体的培养的最后阶段。同样,我们观察到培养基(Gamborg B5培养基)中的硼缺乏和氮限制增强了愈伤组织生物质(新鲜重量413克/升和干重20.7克/升),酚类生产(667.60mg / L)和Lignan含量( Secoisolariciresinol Diglucoside 6.33和Lariciresinol Diglucoside分别为5.22mg / g干重,在16/8H光和黑暗周4,而Neolignans(脱氢尼替代醇醇葡糖苷44.42和Guaiacylglycerol-Oconiferyl醇醚葡糖苷分别为9.26 mg / g干重)在培养4周后连续黑暗。相反,Murashige和Skoog,Schenk和Hildebrandt介质(介质类型在连续光线下,Schenk和Hildebrandt培养基(两种介质类型都含有相对较高的硼和氮含量),发生了最大的黄酮类化合物。通常,连续暗在任何生长相关参数中没有显着作用。本研究开辟了新的尺寸,以优化生长条件,并评估LININAN和NINOM的含量培养的生物合成中的生物合成机制。

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