Breitenbach Heiko H, Wenig Marion, Wittek Finni, Jordá Lucia, Maldonado-Alconada Ana M, Sarioglu Hakan, Colby Thomas, Knappe Claudia, Bichlmeier Marlies, Pabst Elisabeth, Mackey David, Parker Jane E, Vlot A Corina
Helmholtz Zentrum Muenchen, Department of Environmental Sciences, Institute of Biochemical Plant Pathology (H.H.B., M.W., F.W., C.K., M.B., E.P., A.C.V.), and Research Unit Protein Science (H.S.), 85764 Neuherberg, Germany;Max-Planck Institute for Plant Breeding Research, Department of Plant-Microbe Interactions (L.J., J.E.P., A.C.V.) and Mass Spectrometry Unit (T.C.), 50829 Cologne, Germany;John Innes Centre, Norwich NR4 7UH, United Kingdom (A.M.M.-A.); andOhio State University, Department of Horticulture and Crop Science and Department of Molecular Genetics, Columbus, Ohio 43210 (D.M.).
Helmholtz Zentrum Muenchen, Department of Environmental Sciences, Institute of Biochemical Plant Pathology (H.H.B., M.W., F.W., C.K., M.B., E.P., A.C.V.), and Research Unit Protein Science (H.S.), 85764 Neuherberg, Germany;Max-Planck Institute for Plant Breeding Research, Department of Plant-Microbe Interactions (L.J., J.E.P., A.C.V.) and Mass Spectrometry Unit (T.C.), 50829 Cologne, Germany;John Innes Centre, Norwich NR4 7UH, United Kingdom (A.M.M.-A.); andOhio State University, Department of Horticulture and Crop Science and Department of Molecular Genetics, Columbus, Ohio 43210 (D.M.)
Plant Physiol. 2014 Jun;165(2):791-809. doi: 10.1104/pp.114.239665. Epub 2014 Apr 22.
Systemic acquired resistance (SAR) is an inducible immune response that depends on ENHANCED DISEASE SUSCEPTIBILITY1 (EDS1). Here, we show that Arabidopsis (Arabidopsis thaliana) EDS1 is required for both SAR signal generation in primary infected leaves and SAR signal perception in systemic uninfected tissues. In contrast to SAR signal generation, local resistance remains intact in eds1 mutant plants in response to Pseudomonas syringae delivering the effector protein AvrRpm1. We utilized the SAR-specific phenotype of the eds1 mutant to identify new SAR regulatory proteins in plants conditionally expressing AvrRpm1. Comparative proteomic analysis of apoplast-enriched extracts from AvrRpm1-expressing wild-type and eds1 mutant plants led to the identification of 12 APOPLASTIC, EDS1-DEPENDENT (AED) proteins. The genes encoding AED1, a predicted aspartyl protease, and another AED, LEGUME LECTIN-LIKE PROTEIN1 (LLP1), were induced locally and systemically during SAR signaling and locally by salicylic acid (SA) or its functional analog, benzo 1,2,3-thiadiazole-7-carbothioic acid S-methyl ester. Because conditional overaccumulation of AED1-hemagglutinin inhibited SA-induced resistance and SAR but not local resistance, the data suggest that AED1 is part of a homeostatic feedback mechanism regulating systemic immunity. In llp1 mutant plants, SAR was compromised, whereas the local resistance that is normally associated with EDS1 and SA as well as responses to exogenous SA appeared largely unaffected. Together, these data indicate that LLP1 promotes systemic rather than local immunity, possibly in parallel with SA. Our analysis reveals new positive and negative components of SAR and reinforces the notion that SAR represents a distinct phase of plant immunity beyond local resistance.
系统获得性抗性(SAR)是一种依赖于增强疾病易感性1(EDS1)的诱导性免疫反应。在此,我们表明拟南芥(Arabidopsis thaliana)的EDS1对于初级感染叶片中的SAR信号产生和系统未感染组织中的SAR信号感知都是必需的。与SAR信号产生不同,在eds1突变体植物中,响应于递送效应蛋白AvrRpm1的丁香假单胞菌,局部抗性保持完整。我们利用eds1突变体的SAR特异性表型,在条件性表达AvrRpm1的植物中鉴定新的SAR调节蛋白。对表达AvrRpm1的野生型和eds1突变体植物的富含质外体提取物进行比较蛋白质组学分析,鉴定出12种质外体、EDS1依赖性(AED)蛋白。编码预测为天冬氨酰蛋白酶的AED1和另一种AED豆科凝集素样蛋白1(LLP1)的基因,在SAR信号传导期间在局部和系统水平上被诱导,并且在局部被水杨酸(SA)或其功能类似物苯并1,2,3-噻二唑-7-硫代羧酸S-甲酯诱导。由于AED1-血凝素的条件性过度积累抑制了SA诱导的抗性和SAR,但不抑制局部抗性,数据表明AED1是调节系统免疫的稳态反馈机制的一部分。在llp1突变体植物中,SAR受损,而通常与EDS1和SA相关的局部抗性以及对外源SA的反应在很大程度上未受影响。总之,这些数据表明LLP1促进系统而非局部免疫,可能与SA并行。我们的分析揭示了SAR的新的正调控和负调控成分,并强化了SAR代表植物免疫超越局部抗性的一个独特阶段的观点。