Pang Shihai, Zhai Jiaqi, Song Junqiao, Rong Deqing, Hong Yihan, Qiu Yue, Ma Jingzhi, Qi Tiancong, Huang Huang, Song Susheng
College of Life Sciences, Capital Normal University, Beijing, 100048, China.
Plant Science and Technology College, Beijing University of Agriculture, Beijing, 102206, China.
Plant J. 2024 Dec;120(6):2623-2638. doi: 10.1111/tpj.17132. Epub 2024 Nov 23.
Plants are attacked by various insect herbivores. Upon attack-triggered biosynthesis of the phytohormone jasmonates (JAs), the JA receptor CORONATINE INSENSITIVE 1 recruits the JA-ZIM domain (JAZ) repressors for ubiquitination, releases the MYC-MYB transcription factor (TF) complexes, and enhances glucosinolates (GSs) biosynthesis to promote defense against insects in Arabidopsis. However, the negative regulation of JA-regulated defense remains largely unclear. Here, we found that Arabidopsis IVa bHLH TFs bHLH19 and bHLH20 interacted with JAZs. The bhlh19/20 mutations enhanced defense against the insects Spodoptera frugiperda and S. exigua, while their overexpression inhibited defense. bHLH19/20 repressed defense via at least two layers of regulation: first, bHLH19/20 interacted with the members MYC2/3/4/5 and MYB34/51/122 of MYC-MYB complexes, and inhibited the interaction/transcription activity of MYC2-MYB34; second, bHLH19/20 activated the RNA level of nitrile-specifier protein 1, which converts GSs into the less toxic nitriles. bhlh19/20 exhibited no penalty in JA-regulated growth inhibition. Collectively, our findings reveal the molecular mechanism for negatively regulating JA-mediated defense against insects in Arabidopsis without growth penalty by the pair of bHLH19/20 TFs.
植物会受到各种食草昆虫的攻击。受到攻击后,植物激素茉莉酸(JAs)会触发生物合成,茉莉酸受体冠菌素不敏感蛋白1会招募茉莉酸-ZIM结构域(JAZ)阻遏蛋白进行泛素化,释放MYC-MYB转录因子(TF)复合物,并增强硫代葡萄糖苷(GSs)的生物合成,以促进拟南芥对昆虫的防御。然而,茉莉酸调节的防御的负调控在很大程度上仍不清楚。在这里,我们发现拟南芥IVa类bHLH转录因子bHLH19和bHLH20与JAZ相互作用。bhlh19/20突变增强了对草地贪夜蛾和甜菜夜蛾的防御能力,而它们的过表达则抑制了防御。bHLH19/20通过至少两层调控来抑制防御:首先,bHLH19/20与MYC-MYB复合物的成员MYC2/3/4/5和MYB34/51/122相互作用,并抑制MYC2-MYB34的相互作用/转录活性;其次,bHLH19/20激活腈特异性蛋白1的RNA水平,该蛋白将GSs转化为毒性较小的腈。bhlh19/20在茉莉酸调节的生长抑制方面没有表现出不利影响。总的来说,我们的研究结果揭示了由bHLH19/20转录因子对在不影响生长的情况下负调控拟南芥中茉莉酸介导的昆虫防御的分子机制。