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番茄抗基因 Bs4 抑制由黄单胞菌致病菌株来源的转录激活子样效应物 AvrHah1 诱导的叶片水渍症状。

The tomato resistance gene Bs4 suppresses leaf watersoaking phenotypes induced by AvrHah1, a transcription activator-like effector from tomato-pathogenic xanthomonads.

机构信息

University of Tübingen, ZMBP - General Genetics, Auf der Morgenstelle 32, 72076, Tuebingen, Germany.

University of Tübingen, ZMBP - Central Facilities, Auf der Morgenstelle 32, 72076, Tuebingen, Germany.

出版信息

New Phytol. 2022 Dec;236(5):1856-1870. doi: 10.1111/nph.18456. Epub 2022 Oct 3.

Abstract

The Xanthomonas transcription activator-like effector (TALE) protein AvrBs3 transcriptionally activates the executor-type resistance (R) gene Bs3 from pepper (Capsicum annuum), thereby triggering a hypersensitive cell death reaction (HR). AvrBs3 also triggers an HR in tomato (Solanum lycopersicum) upon recognition by the nucleotide-binding leucine-rich repeat (NLR) R protein Bs4. Whether the executor-type R protein Bs3 and the NLR-type R protein Bs4 use common or distinct signalling components to trigger an HR remains unclear. CRISPR/Cas9-mutagenesis revealed, that the immune signalling node EDS1 is required for Bs4- but not for Bs3-dependent HR, suggesting that NLR- and executor-type R proteins trigger an HR via distinct signalling pathways. CRISPR/Cas9-mutagenesis also revealed that tomato Bs4 suppresses the virulence function of both TALEs, the HR-inducing AvrBs3 protein and of AvrHah1, a TALE that does not trigger an HR in tomato. Analysis of AvrBs3- and AvrHah1-induced host transcripts and disease phenotypes in CRISPR/Cas9-induced bs4 mutant plants indicates that both TALEs target orthologous transcription factor genes to promote disease in tomato and pepper host plants. Our studies display that tomato mutants lacking the TALE-sensing Bs4 protein provide a novel platform to either uncover TALE-induced disease phenotypes or genetically dissect components of executor-triggered HR.

摘要

黄单胞菌转录激活样效应物(TALE)蛋白 AvrBs3 转录激活辣椒(Capsicum annuum)中的执行者型抗性(R)基因 Bs3,从而引发过敏性细胞死亡反应(HR)。AvrBs3 还能在番茄(Solanum lycopersicum)中被核苷酸结合富含亮氨酸重复(NLR)R 蛋白 Bs4 识别后触发 HR。执行者型 R 蛋白 Bs3 和 NLR 型 R 蛋白 Bs4 是否使用共同或不同的信号成分来触发 HR 尚不清楚。CRISPR/Cas9 诱变显示,免疫信号节点 EDS1 是 Bs4 而非 Bs3 依赖的 HR 所必需的,这表明 NLR 和执行者型 R 蛋白通过不同的信号通路触发 HR。CRISPR/Cas9 诱变还显示,番茄 Bs4 抑制了两种 TALEs(诱导 HR 的 AvrBs3 蛋白和不诱导番茄 HR 的 AvrHah1)的毒力功能。在 CRISPR/Cas9 诱导的 bs4 突变体植物中分析 AvrBs3 和 AvrHah1 诱导的宿主转录物和疾病表型表明,这两种 TALEs 靶向同源转录因子基因,以促进番茄和辣椒宿主植物的疾病。我们的研究表明,缺乏 TALE 感应 Bs4 蛋白的番茄突变体提供了一个新的平台,用于揭示 TALE 诱导的疾病表型或遗传剖析执行者触发的 HR 的组成部分。

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