Entomopathogenic Fungus Treatment Affects Trophic Interactions by Altering Volatile Emissions in Tomato
作者:Asim Munawar, Haonan Zhang, Jinyi Zhang, Xiangfen Zhang, Xiaoxiao Shi, Xuan Chen, Z Q Li, Xiaoli He, Jian Zhong, Zeng‐Rong Zhu, Yaqiang Zheng, Wenwu Zhou · 发表于:Agronomy · 年份:2025 · DOI:10.3390/agronomy15051161 · 被引用次数:10 · 研究领域:Entomopathogenic Microorganisms in Pest Control、Insect Utilization and Effects、Insect Pest Control Strategies
Entomopathogenic fungi (EPFs) can influence plant–insect interactions through complex molecular and chemical mechanisms. This study investigates how EPF treatment of tomato plants modulates volatile organic compound (VOC) emissions and subsequent trophic interactions between tomato plants, the herbivorous pest Phthorimaea absoluta, and the parasitic wasp, Trichogramma chilonis. Our results demonstrate that EPF-treated plants exhibited reduced attractiveness to adult P. absoluta moths, which were actively repelled by EPF-induced VOCs. Conversely, these same plants showed enhanced recruitment of the parasitoid T. chilonis, which demonstrated positive chemotaxis toward the modified VOC profile. Chemical analysis revealed significantly elevated emissions of key VOCs in EPF-treated plants, particularly (E)-β-Caryophyllene, β-phellandrene, and α-Phellandrene. This increase is correlated with enhanced production of defense-related phytohormones, including JA, SA, and JA-Ile, which may regulate VOC biosynthesis pathways. Behavioral response studies using synthetic VOCs and electroantennogram (EAG) measurements confirmed that these EPF-induced VOCs elicited strong olfactory responses in both insect species. To summarize, EPF treatment reshapes multitrophic interactions by strategically modulating plant VOC emissions and activating defense signaling pathways in tomato plants, providing new insights for potential applications in sustainable pest management strategies.