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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Advances in Boerhaavia diffusa hairy root technology: a valuable pursuit for identifying strain sensitivity and up-scaling factors to refine metabolite yield and bioactivity potentials
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Advances in Boerhaavia diffusa hairy root technology: a valuable pursuit for identifying strain sensitivity and up-scaling factors to refine metabolite yield and bioactivity potentials

机译:白花蛇舌草毛状根技术的进展:鉴定菌株敏感性和放大因子以改善代谢物产量和生物活性潜力的宝贵追求

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The present study reports the Agrobacterium rhizogenes-mediated hairy root induction in of an ethno-medicinally significant herb-Boerhaavia diffusa L., for elucidating the underlying competence regarding its biosynthetic (i.e. boeravinone B and eupalitin) and bioactivity (antibacterial, antioxidant and anti-inflammatory) potentials. Host plant-specific receptiveness towards A. rhizogenes strains and disparity in compatibility threshold of leaf and nodal explants were evident. Only leaf explants responded, attaining hairy root induction with the ATCC 15834 followed by A4 and SA79 strains in reducing order of transformation efficiency. The growth behaviours differed amongst independent rhizoclones, and two clones of A4 (RBH) and ATCC 15834 (RBT8) origin demonstrated higher growth potentials. Polymerase chain reaction amplification of rol genes confirmed their transformed nature. Optimization of the appropriate solvent and reverse phase high-performance liquid chromatography parameters relating to the targeted metabolite production in the selected RBH and RBT8 clones revealed higher accumulation of eupalitin with the RBH clone having the best result of 1.44 times greater yield over the control root. Compared to the selected rhizoclones, the control roots however showed higher boeravinone B content. Devising a modified "stirred-tank" reactor through equipping with marine impellers and ring spargers facilitated high-density RBH root biomass yield with 6.1-fold and 1.15-fold yield increment of the boeravinone B and eupalitin respectively compared to shake-flask cultures. Considering the control roots, the RBH clone revealed analogous antioxidant/antibacterial activities with improved anti-inflammatory potential. The hairy root mediated higher production of boeravinone B and eupalitin could be achieved for the first time in bioreactor.
机译:本研究报告了根癌农杆菌介导的具有民族药理意义的草药白花蛇舌草(Boerhaavia diffusa L.)的毛状根诱导作用,旨在阐明有关其生物合成(即,硼酸菌素B和eupalitin)的基本能力和生物活性(抗菌,抗氧化剂和抗炎性的潜力。寄主植物对发根农杆菌菌株的特异性接受以及叶片和结节外植体的相容性阈值差异明显。只有叶外植体响应,以ATCC 15834和A4和SA79菌株获得毛状根诱导,从而降低了转化效率。独立的根瘤菌之间的生长行为有所不同,并且两个A4(RBH)和ATCC 15834(RBT8)来源的克隆显示出更高的生长潜力。 rol基因的聚合酶链反应扩增证实了它们的转化性质。与所选RBH和RBT8克隆中的目标代谢物产生相关的适当溶剂和反相高效液相色谱参数的优化显示,依帕利汀的累积量更高,其中RBH克隆的最佳结果是对照根的1.44倍。与选择的根瘤菌相比,对照根显示出更高的硼生酮B含量。通过配备船用叶轮和环形鼓泡器设计改进的“搅拌釜”反应器,与摇瓶培养相比,可促进高密度RBH根生物量的产量,其中硼烷酮B和eupalitin的产量分别增加6.1倍和1.15倍。考虑到对照根,RBH克隆显示出类似的抗氧化剂/抗菌活性,具有增强的抗炎潜力。在生物反应器中,首次获得了毛状根介导的更高含量的勃拉维酮B和eupalitin的产生。

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