Sung Yi-Chang, Outram Megan A, Breen Susan, Wang Chen, Dagvadorj Bayantes, Winterberg Britta, Kobe Bostjan, Williams Simon J, Solomon Peter S
Research School of Biology, The Australian National University, Canberra, ACT, 2601, Australia.
School of Chemistry and Molecular Biosciences, Institute for Molecular Bioscience and Australian Infectious Diseases Research Centre, University of Queensland, Brisbane, Qld, 4072, Australia.
New Phytol. 2021 Mar;229(6):3467-3480. doi: 10.1111/nph.17128. Epub 2021 Jan 3.
The effector SnTox3 from Parastagonospora nodorum elicits a strong necrotic response in susceptible wheat and also interacts with wheat pathogenesis-related protein 1 (TaPR-1), although the function of this interaction in disease is unclear. Here, we dissect TaPR1 function by studying SnTox3-TaPR1 interaction and demonstrate the dual functionality of SnTox3. We utilized site-directed mutagenesis to identify an SnTox3 variant, SnTox3 , that was unable to interact with TaPR1 in yeast-two-hybrid assays. Additionally, using recombinant proteins we established a novel protein-mediated phenotyping assay allowing functional studies to be undertaken in wheat. Wheat leaves infiltrated with TaPR1 proteins showed significantly less disease compared to control leaves, correlating with a strong increase in defence gene expression. This activity was dependent on release of the TaCAPE1 peptide embedded within TaPR1 by an unidentified serine protease. The priming activity of TaPR1 was compromised by SnTox3 but not the noninteracting variant SnTox3 , and we demonstrate that SnTox3 prevents TaCAPE1 release from TaPR1 in vitro. SnTox3 independently functions to induce necrosis through recognition by Snn3 and also suppresses host defence through a direct interaction with TaPR1 proteins. Importantly, this study also advances our understanding of the role of PR1 proteins in host-microbe interactions as inducers of host defence signalling.
来自小麦根腐平脐蠕孢的效应子SnTox3在感病小麦中引发强烈的坏死反应,并且还与小麦病程相关蛋白1(TaPR - 1)相互作用,尽管这种相互作用在病害中的功能尚不清楚。在这里,我们通过研究SnTox3 - TaPR1相互作用来剖析TaPR1的功能,并证明SnTox3的双重功能。我们利用定点诱变鉴定出一种SnTox3变体SnTox3,在酵母双杂交试验中它无法与TaPR1相互作用。此外,我们使用重组蛋白建立了一种新型的蛋白质介导的表型分析方法,使得能够在小麦中进行功能研究。与对照叶片相比,用TaPR1蛋白浸润的小麦叶片病害明显减轻,这与防御基因表达的强烈增加相关。这种活性依赖于一种未知的丝氨酸蛋白酶释放嵌入在TaPR1中的TaCAPE1肽。TaPR1的引发活性受到SnTox3的损害,但不受非相互作用变体SnTox3的影响,并且我们证明SnTox3在体外阻止TaCAPE1从TaPR1中释放。SnTox3通过被Snn3识别独立发挥诱导坏死的作用,并且还通过与TaPR1蛋白直接相互作用抑制宿主防御。重要的是,这项研究也增进了我们对PR1蛋白作为宿主防御信号诱导剂在宿主 - 微生物相互作用中的作用的理解。