Ghosh Soumya K, Ishangulyyeva Guncha, Erbilgin Nadir, Bonello Pierluigi
Department of Plant Pathology, The Ohio State University, Columbus, Ohio, USA.
Department of Renewable Resources, University of Alberta, Edmonton, Alberta, Canada.
Plant Cell Environ. 2024 Jun;47(6):2206-2227. doi: 10.1111/pce.14875. Epub 2024 Mar 13.
Terpenoids are defense metabolites that are induced upon infection or wounding. However, their role in systemic-induced resistance (SIR) is not known. Here, we explored the role of terpenoids in this phenomenon at a very early stage in the interaction between Austrian pine and the tip blight and canker pathogen Diplodia pinea. We induced Austrian pine saplings by either wounding or inoculating the lower stems with D. pinea. The seedlings were then challenged after 12 h, 72 h, or 10 days with D. pinea on the stem 15 cm above the induction. Lesion lengths and terpenoids were quantified at both induction and challenge locations. Key terpenoids were assayed for antifungal activity in in vitro bioassays. SIR increased with time and was correlated with the inducibility of several compounds. α-Pinene and a cluster of β-pinene, limonene, benzaldehyde, dodecanol, and n-dodecyl acrylate were positively correlated with SIR and were fungistatic in vitro, while other compounds were negatively correlated with SIR and appeared to serve as a carbon source for D. pinea. This study shows that, overall, terpenoids are involved in SIR in this system, but their role is nuanced, depending on the type of induction and time of incubation. We hypothesize that some, such as α-pinene, could serve in SIR signaling.
萜类化合物是在感染或受伤后被诱导产生的防御性代谢产物。然而,它们在系统诱导抗性(SIR)中的作用尚不清楚。在此,我们在奥地利松与梢枯病和溃疡病病原菌松色二孢菌相互作用的早期阶段,探究了萜类化合物在这一现象中的作用。我们通过对奥地利松树苗的下茎进行创伤或接种松色二孢菌来诱导其产生反应。然后在诱导后的12小时、72小时或10天,用松色二孢菌对诱导部位上方15厘米处的茎进行侵染挑战。对诱导部位和挑战部位的病斑长度和萜类化合物进行了定量分析。在体外生物测定中检测了关键萜类化合物的抗真菌活性。系统诱导抗性随时间增加,并且与几种化合物的可诱导性相关。α-蒎烯以及一组β-蒎烯、柠檬烯、苯甲醛、十二烷醇和丙烯酸正十二酯与系统诱导抗性呈正相关,并且在体外具有抑菌作用,而其他化合物与系统诱导抗性呈负相关,似乎作为松色二孢菌的碳源。这项研究表明,总体而言,萜类化合物参与了该系统中的系统诱导抗性,但其作用具有细微差别,这取决于诱导类型和培养时间。我们推测,一些萜类化合物,如α-蒎烯,可能在系统诱导抗性信号传导中发挥作用。