Otto Pius, Célestin Gerlens, Kergunteuil Alan, Valantin-Morison Muriel, Pashalidou Foteini G
UMR Agronomie, INRAE, AgroParisTech, Université Paris-Saclay, 91123, Palaiseau Cedex, France.
INRAE, LAE, Université de Lorraine, 54000, Nancy, France.
Sci Rep. 2025 May 20;15(1):17461. doi: 10.1038/s41598-025-02371-7.
Plants exploit environmental cues about the risks of encountering insect herbivores, often sensitising defensive responses. While herbivore-induced plant volatiles (HIPVs) are reported to enhance plant defences against incoming herbivores, responses to oviposition-induced plant volatiles (OIPVs) are massively under-explored. We studied whether OIPV emissions from Brassica napus enhance defences in non-damaged neighbouring B. napus when subsequently infested with Pieris brassicae larvae. We collected and analysed the emission rates of plant volatile organic compounds under different treatments and measured P. brassicae larvae biomass as a proxy for defence. We show that oviposition triggers the release of specific volatiles, i.e. α-pinene, dimethyl-trisulfide, and limonene, potentially serving as herbivore early warning cues for neighbouring non-damaged plants. Initially, after three days of herbivory, OIPV-receivers emitted lower levels of volatiles compared to control receivers; however, following seven days of herbivory, both control and OIPV-receivers emitted similar amounts of volatiles. We suggest a potential trade-off between direct and indirect defences, with sensitised plants investing metabolic resources initially towards direct and later enhancing indirect defences. We show that OIPVs mediate plant-plant communication, a natural potential for Brassicaceae crop protection.
植物利用有关遭遇食草昆虫风险的环境线索,通常会使防御反应敏感化。虽然据报道,食草动物诱导的植物挥发物(HIPVs)可增强植物对来袭食草动物的防御能力,但对产卵诱导的植物挥发物(OIPVs)的反应却在很大程度上未被充分研究。我们研究了甘蓝型油菜释放的OIPVs在随后被菜粉蝶幼虫侵染时,是否会增强未受损邻近甘蓝型油菜的防御能力。我们收集并分析了不同处理下植物挥发性有机化合物的排放率,并测量了菜粉蝶幼虫的生物量作为防御的指标。我们发现,产卵会触发特定挥发物的释放,即α-蒎烯、二甲基三硫和柠檬烯,这些挥发物可能作为邻近未受损植物的食草动物早期预警信号。最初,在食草三天后,与对照受体相比,接收OIPV的植物释放的挥发物水平较低;然而,在食草七天后,对照植物和接收OIPV的植物释放的挥发物量相似。我们认为在直接防御和间接防御之间可能存在权衡,敏感化的植物最初将代谢资源投入到直接防御中,随后增强间接防御。我们表明,OIPVs介导了植物间的通讯,这是十字花科作物保护的一种天然潜力。