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The Stimulatory Effect of Purine-Type Cytokinins on Proliferation and Polyphenolic Compound Accumulation in Shoot Culture of Salvia viridis

机译:嘌呤型细胞分裂素对丹参芽培养中增殖和多酚化合物积累的刺激作用

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摘要

The present study demonstrates hormonal control of growth and development using four different purine-type cytokinins at different concentrations. The addition of cytokinins significantly increased biomass of cultures, proliferation rate, and, interestingly, secondary metabolite production. The best response in terms of multiplication ratio was recorded on Murashige and Skoog medium supplemented with 0.5 mg/L BPA (N-benzylotetrahydropyranyl adenine), while the greatest biomass accumulation was achieved when supplemented with 1 mg/L -T (meta-topoline). Quantitative UPLC-DAD analysis of the hydromethanolic extract from culture revealed the presence of 12 polyphenols: seven phenolic acids and five phenylethanoids. The highest total content of polyphenolic compounds was found in shoots cultivated on medium with 2 mg/L BPA (18.66 mg/g DW): almost twice that of control shoots. The medium was also the most optimal for the biosynthesis of rosmarinic acid, the predominant phenolic acid. However, the greater phenylethanoid accumulation was stimulated by 1 mg/L -T: the metabolite content was above three times higher than that found in shoots grown on the control medium (8.03 mg/g DW vs. 2.37 mg/g DW). Hence, it was demonstrated that phytohormones are capable of influencing not only vital physiological processes, but therapeutic potential of plants as well. Therefore, the cytokinin-based sage cultures may be also considered as the alternative sources of bioactive compounds.
机译:本研究证明了使用不同浓度的四种不同嘌呤型细胞分裂素的激素控制生长和发育。细胞分裂素的添加显着增加了培养物的生物量,增殖速率,并且有趣的是,次级代谢产物的产生。补充0.5 mg / L BPA(N-苄基四氢吡喃基腺嘌呤)的Murashige和Skoog培养基记录了以增殖比表示的最佳响应,而补充1 mg / L -T(间位-topoline)则获得了最大的生物量积累。 。对培养物中氢甲醇提取物的定量UPLC-DAD分析表明,存在12种多酚:七种酚酸和五种苯乙醛。在含2 mg / L BPA(18.66 mg / g DW)的培养基上培养的芽中发现多酚化合物的最高总含量:几乎是对照芽的两倍。该介质对于迷迭香酸(主要的酚酸)的生物合成也是最理想的。然而,1 mg / L -T刺激了更大的苯乙醛类积累:代谢物含量比对照培养基上生长的芽中发现的高三倍以上(8.03 mg / g DW对2.37 mg / g DW)。因此,证明了植物激素不仅能够影响重要的生理过程,而且还能够影响植物的治疗潜力。因此,基于细胞分裂素的鼠尾草培养物也可以被视为生物活性化合物的替代来源。

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