Department of Pharmaceutical Botany and Plant Biotechnology, University of Medical Sciences in Poznan, 14 Św. Marii Magdaleny St., 61-861 Poznań, Poland.
Department of Pharmaceutical Botany, Collegium Medicum, Jagiellonian University, 9 Medyczna St., 30-688 Kraków, Poland.
Molecules. 2021 Sep 12;26(18):5532. doi: 10.3390/molecules26185532.
The present work was aimed at studying the potential of elicitation on the accumulation of phenolic compounds in in vitro shoot cultures of L., a protected plant from the Apiaceae family. The study examined the influence of (+)-usnic acid on the biomass growth as well as on the biosynthesis of the desired flavonoids and phenolic acids in the cultured microshoots. The phenolic compound content was determined by HPLC-DAD. The flavonoid of the highest concentration was isoquercetin, and the phenolic acids of the highest amount were rosmarinic acid, caffeic acid and 3,4-dihydroxyphenylacetic acid, both in the non-elicited and elicited biomass. Isoquercetin accumulation was efficiently increased by a longer elicitation with a lower concentration of lichenic compound (107.17 ± 4.67 mg/100 g DW) or a shorter elicitation with a higher concentration of acid (127.54 ± 11.34 and 108.37 ± 12.1 mg/100 g DW). Rosmarinic acid production generally remained high in all elicited and non-elicited microshoots. The highest content of this acid was recorded at 24 h of elicitation with 3.125 µM usnic acid (512.69 ± 4.89 mg/100 g DW). The process of elicitation with (+)-usnic acid, a well-known lichenic compound with allelopathic nature, may therefore be an effective technique of enhancing phenolic compound accumulation in alpine eryngo microshoot biomass.
本研究旨在探讨激发子对伞形科保护植物 L. 体外芽培养物中酚类化合物积累的潜力。该研究考察了 (+)-usnic 酸对生物量生长以及培养小芽中所需类黄酮和酚酸生物合成的影响。采用 HPLC-DAD 法测定酚类化合物含量。浓度最高的类黄酮为异槲皮苷,非激发和激发生物量中含量最高的酚酸分别为迷迭香酸、咖啡酸和 3,4-二羟基苯乙酸。用浓度较低的(107.17 ± 4.67 mg/100 g DW)或浓度较高的激发子(127.54 ± 11.34 和 108.37 ± 12.1 mg/100 g DW)延长激发时间可以有效地增加异槲皮苷的积累。在所有被激发和未被激发的小芽中,迷迭香酸的产量通常保持较高水平。用 3.125 µM (+)-usnic 酸激发 24 小时,迷迭香酸的含量最高(512.69 ± 4.89 mg/100 g DW)。因此,用具有化感特性的已知真菌化合物 (+)-usnic 酸进行激发处理可能是一种有效提高高山刺芹小芽生物量中酚类化合物积累的技术。