Langa-Lomba Natalia, Buzón-Durán Laura, Sánchez-Hernández Eva, Martín-Ramos Pablo, Casanova-Gascón José, Martín-Gil Jesús, González-García Vicente
Instituto Universitario de Investigación en Ciencias Ambientales de Aragón (IUCA), EPS, Universidad de Zaragoza, Carretera de Cuarte, s/n, 22071 Huesca, Spain.
Plant Protection Unit, Agrifood Research and Technology Centre of Aragón, Instituto Agroalimentario de Aragón-IA2 (CITA-Universidad de Zaragoza), Avda. Montañana 930, 50059 Zaragoza, Spain.
Plants (Basel). 2021 Jul 3;10(7):1363. doi: 10.3390/plants10071363.
(L.) Gaertn, viz. milk thistle, has been the focus of research efforts in the past few years, albeit almost exclusively restricted to the medicinal properties of its fruits (achenes). Given that other milk thistle plant organs and tissues have been scarcely investigated for the presence of bioactive compounds, in this study, we present a phytochemical analysis of the extracts of capitula during the flowering phenological stage (stage 67). Gas chromatography-mass spectroscopy results evidenced the presence of high contents of coniferyl alcohol (47.4%), and secondarily of ferulic acid ester, opening a new valorization strategy of this plant based on the former high-added-value component. Moreover, the application of the hydro-methanolic extracts as an antifungal agent has been also explored. Specifically, their activity against three fungal species responsible for the so-called dieback of grapevine (, and ) has been assayed both in vitro and in vivo. From the mycelial growth inhibition assays, the best results (EC values of 303, 366, and 355 μg·mL for , , and , respectively) were not obtained for the hydroalcoholic extract alone, but after its conjugation with stevioside, which resulted in a strong synergistic behavior. Greenhouse experiments confirmed the efficacy of the conjugated complexes, pointing to the potential of the combination of milk thistle extracts with stevioside as a promising plant protection product in organic Viticulture.
(L.) 盖尔特纳,即水飞蓟,在过去几年一直是研究的重点,尽管几乎完全局限于其果实(瘦果)的药用特性。鉴于水飞蓟的其他植物器官和组织中生物活性化合物的存在情况几乎未被研究,在本研究中,我们对处于开花物候期(第67阶段)的头状花序提取物进行了植物化学分析。气相色谱 - 质谱结果表明存在高含量的松柏醇(47.4%),其次是阿魏酸酯,这基于前一种高附加值成分开启了该植物的一种新的增值策略。此外,还探索了水 - 甲醇提取物作为抗真菌剂的应用。具体而言,已在体外和体内测定了它们对三种导致所谓葡萄树枯死病的真菌物种( 、 和 )的活性。从菌丝体生长抑制试验来看,最佳结果( 、 和 的EC值分别为303、366和355 μg·mL)并非单独的水醇提取物所获得,而是在其与甜菊糖苷结合后得到的,这导致了强烈的协同作用。温室实验证实了共轭复合物的功效,表明水飞蓟提取物与甜菊糖苷的组合在有机葡萄栽培中作为一种有前景的植物保护产品的潜力。