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首页> 外文期刊>Acta Physiologiae Plantarum >Sucrose regulated enhanced induction of anthraquinone, phenolics, flavonoids biosynthesis and activities of antioxidant enzymes in adventitious root suspension cultures of Morinda citrifolia (L.)
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Sucrose regulated enhanced induction of anthraquinone, phenolics, flavonoids biosynthesis and activities of antioxidant enzymes in adventitious root suspension cultures of Morinda citrifolia (L.)

机译:蔗糖调节巴戟天不定根悬浮培养物中蒽醌,酚类,类黄酮的生物合成和抗氧化酶活性的增强诱导。

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The effect of initial sucrose concentration was investigated in root suspension cultures of Morinda citrifolia to improve root growth and secondary metabolites production, i.e. anthraquinone, phenolics and flavonoids. Besides, oxidative stress level, antioxidant enzymes activity and membranes damage under different sucrose concentration were estimated. A 5% sucrose supply was shown to be optimal for the production of root dry mass, but higher sucrose concentrations of 7–9% inhibited the accumulation of root dry weight (DW). However, the maximum production of anthraquinone (251.89 g L−1 DW), phenolics (165.14 g L−1 DW) and flavonoids (163.56 g L−1 DW) were achieved at 1% sucrose-treated culture, which may be a source carbon skeletons for secondary metabolism. At the same time was observed low oxidative damage, which could be associated with high levels of secondary metabolites and the increased activity of catalase. Although, catalase (CAT) activity were stimulated at 7–9% sucrose-treated cultures, high accumulation of hydrogen peroxide (H2O2) and peroxidation of lipid (MDA) was induced. The observed high activity of CAT and guaiacol peroxidase (G-POD) were not sufficient enough to mitigate the toxic effect of H2O2.
机译:在巴戟天根悬浮培养物中研究了初始蔗糖浓度的影响,以改善根的生长和次级代谢产物的产生,即蒽醌,酚类和类黄酮。此外,估计了在不同蔗糖浓度下的氧化应激水平,抗氧化酶活性和膜损伤。 5%的蔗糖供应被证明是最佳的根干物质生产,但是更高的蔗糖浓度7–9%抑制了根干重(DW)的积累。但是,蒽醌(251.89 g L -1 DW),酚类(165.14 g L -1 DW)和类黄酮(163.56 g L -1 DW)是在1%蔗糖处理的培养物中获得的,这可能是次级代谢的碳骨架。同时观察到低的氧化损伤,其可能与高水平的次级代谢产物和过氧化氢酶活性的增加有关。尽管蔗糖处理过的培养物中过氧化氢酶(CAT)活性受到7–9%的刺激,过氧化氢(H 2 O 2 )的高积累和脂质的过氧化(MDA) )被诱导。所观察到的CAT和愈创木酚过氧化物酶(G-POD)的高活性不足以减轻H 2 O 2 的毒性作用。

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