Fandino Ana Cecilia Aliaga, Vigneron Nicolas, Alfonso Esteban, Burdet Jean-Philippe, Remolif Eric, Cattani Amanda Malvessi, Smit-Sadki Tara, Cluzet Stéphanie, Valls-Fonayet Josep, Pétriacq Pierre, Rienth Markus
University of Sciences and Art Western Switzerland, Changins College for Viticulture and Enology, Route de Duillier 50, Nyon, 1260, Switzerland.
Agroscope, Plant Protection, Mycology, Route de Duillier 60, Nyon, 1260, Switzerland.
BMC Plant Biol. 2024 Dec 18;24(1):1180. doi: 10.1186/s12870-024-05875-y.
Priming plants with natural products is extensively studied in the agricultural field to reduce the use of synthetic and copper-based pesticides. Previous studies have shown that Oregano essential oil vapour (OEOV) is an effective priming agent against downy mildew (DM) in grapevine (Vitis vinifera L. cv. Chasselas), activating different transcriptomic regulated defence mechanisms.
In the present study, we complement transcriptomic data with metabolomic insights, confirming some previous regulating patterns and highlighting new mechanisms underlying OEOV-induced resistance. A significant modulation of the phenylpropanoid pathway was noted. The data also confirmed the induction of an oxidative stress response indicated by an up-regulation of reactive oxygen species (ROS)-related genes and a congruent depletion of putative L-glutathione. Interestingly, OEOV promoted the accumulation of organic metabolites such as terpenes and other potential phytoalexins, which could potentially contribute to grapevine innate immune response to Plasmopara viticola.
Overall, this study uncovered a diverse influence of OEOV on V. vinifera defence mechanisms against DM, enhancing our comprehension of the mode of action of essential oils. This insight offers various prospects for crafting innovative biocontrol products, fostering a more dynamic and sustainable approach to agriculture.
在农业领域,利用天然产物对植物进行引发处理以减少合成农药和铜基农药的使用已得到广泛研究。先前的研究表明,牛至精油蒸汽(OEOV)是葡萄(Vitis vinifera L. cv. Chasselas)霜霉病(DM)的有效引发剂,可激活不同的转录组调控防御机制。
在本研究中,我们用代谢组学见解补充转录组数据,证实了一些先前的调控模式,并突出了OEOV诱导抗性的新机制。观察到苯丙烷类途径有显著调节。数据还证实了氧化应激反应的诱导,表现为活性氧(ROS)相关基因上调以及假定的L-谷胱甘肽的相应消耗。有趣的是,OEOV促进了萜类和其他潜在植保素等有机代谢物的积累,这可能有助于葡萄对葡萄霜霉病菌的先天免疫反应。
总体而言,本研究揭示了OEOV对酿酒葡萄抗霜霉病防御机制的多种影响,增进了我们对精油作用方式的理解。这一见解为开发创新生物防治产品提供了各种前景,促进了更具活力和可持续性的农业发展方式。