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发光二极管优化对貉藻科植物次生代谢产物的生产。

Light emitting diodes optimisation for secondary metabolites production by Droseraceae plants.

机构信息

Institute of Biotechnology and Molecular Medicine, Gdańsk, Poland; Herbiopharm sp. z o.o., Gdańsk, Poland.

Institute of Biotechnology and Molecular Medicine, Gdańsk, Poland.

出版信息

J Photochem Photobiol B. 2021 Nov;224:112308. doi: 10.1016/j.jphotobiol.2021.112308. Epub 2021 Sep 14.

Abstract

The most abundant active compound in Droseraceae is plumbagin, a naphthoquinone widely used for medical purposes due to its antimicrobial, antitussive, antimalarial and anticancer properties. In this work, we created a light-emitting diode (LED) based culture illumination setup as an alternative to fluorescent lamps traditionally used as a light source in plant in vitro cultures. The plants of Drosera binata and Drosera peltata cultured under LED illumination grew equally well and produced similar amounts of biologically active compounds as plants grown under fluorescent lamps. The plants were cultured on two media differing in mineral composition, sucrose content and pH. Secondary metabolites were extracted with ethanol from the plants after harvesting. The extracts were subjected to HPLC and microbiological analyses. We observed differences in morphology and secondary metabolism between plants of the same species grown on different media. However, we did not note significant changes in secondary metabolite yield under assessed lighting conditions. We propose LEDs as a more efficient, eco-friendly and economically reasonable source of light for big scale in vitro production of plumbagin in Drosera species than fluorescent lamps.

摘要

茅膏菜科中最丰富的活性化合物是白花丹素,一种广泛用于医学的萘醌,因其具有抗菌、镇咳、抗疟和抗癌特性。在这项工作中,我们创建了一个基于发光二极管 (LED) 的培养照明装置,作为传统上用于植物离体培养的荧光灯的替代品。在 LED 照明下培养的貉藻和毛毡苔生长良好,产生的生物活性化合物与在荧光灯下生长的植物相似。这些植物在两种矿物质组成、蔗糖含量和 pH 值不同的培养基上进行培养。收获后,用乙醇从植物中提取次生代谢物。提取物进行 HPLC 和微生物分析。我们观察到在不同培养基上生长的同一物种的植物在形态和次生代谢物方面存在差异。然而,在评估的光照条件下,我们没有注意到次生代谢产物产量的显著变化。我们提出 LED 作为一种比荧光灯更有效、更环保且经济合理的光源,用于大规模离体生产茅膏菜中的白花丹素。

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