State Key Laboratory of Biocontrol, Guangdong Provincial Key Laboratory of Plant Resources, School of Life Sciences, Sun Yat-sen University, Guangzhou, Guangdong, China.
Plant Biotechnol J. 2022 May;20(5):991-1005. doi: 10.1111/pbi.13781. Epub 2022 Feb 18.
Rice is a staple food crop worldwide, and its production is severely threatened by phloem-feeding insect herbivores, particularly the brown planthopper (BPH, Nilaparvata lugens), and destructive pathogens. Despite the identification of many BPH resistance genes, the molecular basis of rice resistance to BPH remains largely unclear. Here, we report that the plant elicitor peptide (Pep) signalling confers rice resistance to BPH. Both rice PEP RECEPTORs (PEPRs) and PRECURSORs of PEP (PROPEPs), particularly OsPROPEP3, were transcriptionally induced in leaf sheaths upon BPH infestation. Knockout of OsPEPRs impaired rice resistance to BPH, whereas exogenous application of OsPep3 improved the resistance. Hormone measurement and co-profiling of transcriptomics and metabolomics in OsPep3-treated rice leaf sheaths suggested potential contributions of jasmonic acid biosynthesis, lipid metabolism and phenylpropanoid metabolism to OsPep3-induced rice immunity. Moreover, OsPep3 elicitation also strengthened rice resistance to the fungal pathogen Magnaporthe oryzae and bacterial pathogen Xanthamonas oryzae pv. oryzae and provoked immune responses in wheat. Collectively, this work demonstrates a previously unappreciated importance of the Pep signalling in plants for combating piercing-sucking insect herbivores and promises exogenous application of OsPep3 as an eco-friendly immune stimulator in agriculture for crop protection against a broad spectrum of insect pests and pathogens.
水稻是世界范围内的主要粮食作物,其生产受到韧皮部取食昆虫(尤其是褐飞虱(Nilaparvata lugens))和破坏性病原体的严重威胁。尽管已经鉴定出许多褐飞虱抗性基因,但水稻对褐飞虱抗性的分子基础在很大程度上仍不清楚。在这里,我们报告植物激发肽(Pep)信号赋予了水稻对褐飞虱的抗性。褐飞虱侵害后,水稻 Pep 受体(PEPRs)和 Pep 前体(PROPEPs),特别是 OsPROPEP3,均在叶鞘中被转录诱导。OsPEPRs 的敲除会损害水稻对褐飞虱的抗性,而外源性应用 OsPep3 则提高了抗性。在 OsPep3 处理的水稻叶鞘中进行激素测量和转录组学和代谢组学的共分析表明,茉莉酸生物合成、脂质代谢和苯丙素代谢可能对 OsPep3 诱导的水稻免疫有贡献。此外,OsPep3 的激发也增强了水稻对真菌病原体稻瘟病菌和细菌病原体稻黄单胞菌 pv. 稻黄单胞菌的抗性,并在小麦中引发了免疫反应。总之,这项工作表明 Pep 信号在植物中对于抵御刺吸式昆虫害虫具有以前未被认识到的重要性,并有望将 OsPep3 作为一种生态友好型免疫刺激剂在农业中应用,以保护作物免受广泛的害虫和病原体的侵害。