The N-terminus of an Ustilaginoidea virens Ser-Thr-rich glycosylphosphatidylinositol-anchored protein elicits plant immunity as a MAMP

富含丝氨酸-苏氨酸的糖基磷脂酰肌醇锚定蛋白的 N 端作为 MAMP 引发植物免疫

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作者:Tianqiao Song, You Zhang, Qi Zhang, Xiong Zhang, Danyu Shen, Junjie Yu, Mina Yu, Xiayan Pan, Huijuan Cao, Mingli Yong, Zhongqiang Qi, Yan Du, Rongsheng Zhang, Xiaole Yin, Junqing Qiao, Youzhou Liu, Wende Liu, Wenxian Sun, Zhengguang Zhang, Yuanchao Wang, Daolong Dou, Zhenchuan Ma, Yongfeng Liu

Abstract

Many pathogens infect hosts through specific organs, such as Ustilaginoidea virens, which infects rice panicles. Here, we show that a microbe-associated molecular pattern (MAMP), Ser-Thr-rich Glycosyl-phosphatidyl-inositol-anchored protein (SGP1) from U. virens, induces immune responses in rice leaves but not panicles. SGP1 is widely distributed among fungi and acts as a proteinaceous, thermostable elicitor of BAK1-dependent defense responses in N. benthamiana. Plants specifically recognize a 22 amino acid peptide (SGP1 N terminus peptide 22, SNP22) in its N-terminus that induces cell death, oxidative burst, and defense-related gene expression. Exposure to SNP22 enhances rice immunity signaling and resistance to infection by multiple fungal and bacterial pathogens. Interestingly, while SGP1 can activate immune responses in leaves, SGP1 is required for U. virens infection of rice panicles in vivo, showing it contributes to the virulence of a panicle adapted pathogen.

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