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The barley leaf rust resistance gene Rph3 encodes a putative executor protein

Zugehörigkeit
The University of Sydney, Faculty of Science, Plant Breeding Institute, Cobbitty, NSW 2570, Australia
Dinh, Hoan;
Zugehörigkeit
The University of Sydney, Faculty of Science, Plant Breeding Institute, Cobbitty, NSW 2570, Australia
Singh, Davinder;
Zugehörigkeit
The Sainsbury Laboratory, University of East Anglia, Norwich Research Park, Norwich NR4 7UK, UK
Cruz, Diana;
Zugehörigkeit
Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstr. 3, 06466 Seeland, Germany; Centre of the Region Haná for Biotechnological and Agricultural Research, Czech Advanced Technology and Research Institute, Palacký University Olomouc, 78371 Olomouc, Czech Republic
Hensel, Goetz;
Zugehörigkeit
Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstr. 3, 06466 Seeland, Germany; German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Leipzig, Germany
Mascher, Martin;
GND
120077000
Zugehörigkeit
Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstr. 3, 06466 Seeland, Germany; Center of integrated Breeding Research (CiBreed), Department of Crop Sciences, Georg-August-University, Von Siebold Str. 8, 37075 Göttingen, Germany
Stein, Nils;
GND
1059141701
Zugehörigkeit
Julius Kühn-Institute (JKI), Institute for Resistance Research and Stress Tolerance, Germany
Perovic, Dragan;
Zugehörigkeit
Commonwealth Scientific and Industrial Research Organisation, Black Mountain ACT 2601, Australia
Ayliffe, Michael;
Zugehörigkeit
The Sainsbury Laboratory, University of East Anglia, Norwich Research Park, Norwich NR4 7UK, UK
Moscou, Matthew;
Zugehörigkeit
The University of Sydney, Faculty of Science, Plant Breeding Institute, Cobbitty, NSW 2570, Australia
Park, Robert;
Zugehörigkeit
The University of Melbourne, Faculty of Veterinary and Agriculture, Parkville 3010, Australia
Pourkheirandish, Mohammad

Host resistance is considered the most effective means to control plant diseases; however, individually deployed resistance genes are often rapidly overcome by pathogen adaptation. Combining multiple effective resistance genes is the optimal approach to durable resistance, but the lack of functional markers for resistance genes has hampered implementation. Leaf rust, caused by Puccinia hordei, is an economically significant disease of barley, but only a few major Resistance genes to P. hordei (Rph) have been cloned. In this study, gene Rph3 was isolated by positional cloning and confirmed by mutational analysis and transgenic complementation. The Rph3 gene, which originated from wild barley and was first introgressed into cultivated Egyptian germplasm, encodes a unique transmembrane resistance protein that differs from all known plant disease resistance proteins at the amino acid sequence level. Genetic profiles of diverse accessions indicated limited genetic diversity in Rph3 in domesticated germplasm, and higher diversity in wild barley from the Eastern Mediterranean region. Expression profiling using P. hordei isolates with contrasting pathogenicity for the Rph3 host locus showed that the Rph3 gene was expressed only in interactions with Rph3-avirulent isolates, a phenomenon also observed for transcription activator-like effector-dependent genes known as executors conferring resistance to Xanthomonas spp. Like the known transmembrane executors such as Bs3 and Xa7 heterologous expression of Rph3 in N. benthamiana induced a cell death response. Given that Rph3 shares several features with executor genes, it seems likely that P. hordei contains effectors similar to the transcription activator-like effectors that target host executor genes. The isolation of Rph3 highlights convergent evolutionary processes in diverse plant-pathogen interaction systems, where similar defence mechanisms evolved independently in monocots and dicots and provide evidence for executor genes in the Triticeae tribe.

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