Yao Chengcheng, Du Lixiao, Liu Qingsong, Hu Xiaoyun, Ye Wenfeng, Turlings Ted C J, Li Yunhe
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.
College of Life Sciences, Xinyang Normal University, Xinyang, 464000, China.
New Phytol. 2023 Mar;237(6):2375-2387. doi: 10.1111/nph.18548. Epub 2022 Nov 23.
Herbivore-induced plant volatiles (HIPVs) are known to be perceived by neighboring plants, resulting in induction or priming of chemical defenses. There is little information on the defense responses that are triggered by these plant-plant interactions, and the phenomenon has rarely been studied in rice. Using chemical and molecular analyses in combination with insect behavioral and performance experiments, we studied how volatiles emitted by rice plants infested by the striped stemborer (SSB) Chilo suppressalis affect defenses against this pest in conspecific plants. Compared with rice plants exposed to the volatiles from uninfested plants, plants exposed to SSB-induced volatiles showed enhanced direct and indirect resistance to SSB. When subjected to caterpillar damage, the HIPV-exposed plants showed increased expression of jasmonic acid (JA) signaling genes, resulting in JA accumulation and higher levels of defensive proteinase inhibitors. Moreover, plants exposed to SSB-induced volatiles emitted larger amounts of inducible volatiles and were more attractive to the parasitoid Cotesia chilonis. By unraveling the factors involved in HIPV-mediated defense priming in rice, we reveal a key defensive role for proteinase inhibitors. These findings pave the way for novel rice management strategies to enhance the plant's resistance to one of its most devastating pests.
植食性昆虫诱导植物产生的挥发物(HIPVs)已知可被邻近植物感知,从而引发或启动化学防御。关于这些植物间相互作用引发的防御反应的信息很少,而且这种现象在水稻中很少被研究。我们结合化学和分子分析以及昆虫行为和性能实验,研究了受二化螟(SSB)侵袭的水稻植株释放的挥发物如何影响同种植物对这种害虫的防御。与暴露于未受侵袭植株挥发物的水稻植株相比,暴露于二化螟诱导挥发物的植株对二化螟的直接和间接抗性增强。当受到毛虫损伤时,暴露于HIPVs的植株茉莉酸(JA)信号基因表达增加,导致JA积累和防御性蛋白酶抑制剂水平升高。此外,暴露于二化螟诱导挥发物的植株释放出大量可诱导挥发物,对寄生蜂稻螟赤眼蜂更具吸引力。通过揭示水稻中HIPV介导的防御启动所涉及的因素,我们揭示了蛋白酶抑制剂的关键防御作用。这些发现为提高水稻对其最具破坏性害虫之一的抗性的新型水稻管理策略铺平了道路。