茉莉酸
生物
病菌
水杨酸
微生物学
植物抗病性
水稻黄单胞菌。稻瘟
茄丝核菌
稻黄单胞菌
植物对草食的防御
细胞生物学
基因
生物化学
植物
作者
Yudan Zhao,Xiaoying Zhu,Cheng‐Min Shi,Guojuan Xu,Shimin Zuo,Yanlong Shi,Wenlei Cao,Houxiang Kang,Wende Liu,Ruyi Wang,Yuese Ning,Guo‐Liang Wang,Xuli Wang
摘要
Plants typically activate distinct defense pathways against various pathogens. Heightened resistance to one pathogen often coincides with increased susceptibility to another pathogen. However, the underlying molecular basis of this antagonistic response remains unclear. Here, we demonstrate that mutants defective in the transcription factor ETHYLENE-INSENSITIVE 3-LIKE 2 (OsEIL2) exhibited enhanced resistance to the biotrophic bacterial pathogen Xanthomonas oryzae pv oryzae and to the hemibiotrophic fungal pathogen Magnaporthe oryzae, but enhanced susceptibility to the necrotrophic fungal pathogen Rhizoctonia solani. Furthermore, necrotroph-induced OsEIL2 binds to the promoter of OsWRKY67 with high affinity, leading to the upregulation of salicylic acid (SA)/jasmonic acid (JA) pathway genes and increased SA/JA levels, ultimately resulting in enhanced resistance. However, biotroph- and hemibiotroph-induced OsEIL2 targets OsERF083, resulting in the inhibition of SA/JA pathway genes and decreased SA/JA levels, ultimately leading to reduced resistance. Our findings unveil a previously uncharacterized defense mechanism wherein two distinct transcriptional regulatory modules differentially mediate immunity against pathogens with different lifestyles through the transcriptional reprogramming of phytohormone pathway genes.
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