生物
RNA剪接
内含子
效应器
核糖核酸
疫霉菌
RNA沉默
细胞生物学
RNA结合蛋白
RNA解旋酶A
生物发生
遗传学
小RNA
拼接因子
RNA干扰
基因
解旋酶
植物
作者
Xinmeng Gui,Peng Zhang,Dan Wang,Zhan Ding,Xian Wu,Jinxia Shi,Qian‐Hua Shen,Yong Xu,Wenbo Ma,Yongli Qiao
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2022-06-14
卷期号:34 (9): 3443-3459
被引量:16
标识
DOI:10.1093/plcell/koac176
摘要
Phytophthora effector PSR1 suppresses small RNA (sRNA)-mediated immunity in plants, but the underlying mechanism remains unknown. Here, we show that Phytophthora suppressor of RNA silencing 1 (PSR1) contributes to the pathogenicity of Phytophthora sojae and specifically binds to three conserved C-terminal domains of the eukaryotic PSR1-Interacting Protein 1 (PINP1). PINP1 encodes PRP16, a core pre-mRNA splicing factor that unwinds RNA duplexes and binds to primary microRNA transcripts and general RNAs. Intriguingly, PSR1 decreased both RNA helicase and RNA-binding activity of PINP1, thereby dampening sRNA biogenesis and RNA metabolism. The PSR1-PINP1 interaction caused global changes in alternative splicing (AS). A total of 5,135 genes simultaneously exhibited mis-splicing in both PSR1-overexpressing and PINP1-silenced plants. AS upregulated many mRNA transcripts that had their introns retained. The high occurrence of intron retention in AS-induced transcripts significantly promoted Phytophthora pathogen infection in Nicotiana benthamiana, and this might be caused by the production of truncated proteins. Taken together, our findings reveal a key role for PINP1 in regulating sRNA biogenesis and plant immunity.
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