Poaceae-specific beta-1,3;1,4-D-glucans link jasmonate signalling to OsLecRK1-mediated defence response during rice-brown planthopper interactions
文献类型: 外文期刊
第一作者: Dai, Yang-Shuo
作者: Dai, Yang-Shuo;Liu, Di;Guo, Wuxiu;Zhang, Xue;Shi, Li-Li;Zhou, De-Mian;Wang, Ling-Na;Kang, Kui;Wang, Feng-Zhu;Zhao, Shan-Shan;Tan, Yi-Fang;Hu, Tian;Chen, Yue-Qin;Zhang, Wen-Qing;Yu, Lu-Jun;Xiao, Shi;Liu, Zhi-Xuan;Chen, Wu;Li, Peng;Zhou, Qing-Ming;Li, Juan;Yuan, Long-Yu;Zhang, Zhenfei
作者机构:
关键词: jasmonates; mixed-linkage beta-1,3;1,4-D-glucan; OsLecRK1; OsCslF6; Oryza sativa; plant-pest interaction
期刊名称:PLANT BIOTECHNOLOGY JOURNAL ( 影响因子:13.8; 五年影响因子:13.2 )
ISSN: 1467-7644
年卷期: 2023 年 21 卷 6 期
页码:
收录情况: SCI
摘要: Brown planthopper (BPH, Nilaparvata lugens), a highly destructive insect pest, poses a serious threat to rice (Oryza sativa) production worldwide. Jasmonates are key phytohormones that regulate plant defences against BPH; however, the molecular link between jasmonates and BPH responses in rice remains largely unknown. Here, we discovered a Poaceae-specific metabolite, mixed-linkage beta-1,3;1,4-D-glucan (MLG), which contributes to jasmonate-mediated BPH resistance. MLG levels in rice significantly increased upon BPH attack. Overexpressing OsCslF6, which encodes a glucan synthase that catalyses MLG biosynthesis, significantly enhanced BPH resistance and cell wall thickness in vascular bundles, whereas knockout of OsCslF6 reduced BPH resistance and vascular wall thickness. OsMYC2, a master transcription factor of jasmonate signalling, directly controlled the upregulation of OsCslF6 in response to BPH feeding. The AT-rich domain of the OsCslF6 promoter varies in rice varieties from different locations and natural variants in this domain were associated with BPH resistance. MLG-derived oligosaccharides bound to the plasma membrane-anchored LECTIN RECEPTOR KINASE1 OsLecRK1 and modulated its activity. Thus, our findings suggest that the OsMYC2-OsCslF6 module regulates pest resistance by modulating MLG production to enhance vascular wall thickness and OsLecRK1-mediated defence signalling during rice-BPH interactions.
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