Understanding and Exploiting Late Blight Resistance in the Age of Effectors

Author:

Vleeshouwers Vivianne G.A.A.1,Raffaele Sylvain2,Vossen Jack H.1,Champouret Nicolas1,Oliva Ricardo2,Segretin Maria E.2,Rietman Hendrik1,Cano Liliana M.2,Lokossou Anoma1,Kessel Geert3,Pel Mathieu A.1,Kamoun Sophien2

Affiliation:

1. Wageningen UR Plant Breeding, 6700 AJ, Wageningen, The Netherlands;, , , , ,

2. The Sainsbury Laboratory, Norwich Research Park, Norwich, NR4 7UH, United Kingdom;, , , ,

3. Plant Research International, 6700 AA, Wageningen, The Netherlands;

Abstract

Potato (Solanum tuberosum) is the world's third-largest food crop. It severely suffers from late blight, a devastating disease caused by Phytophthora infestans. This oomycete pathogen secretes host-translocated RXLR effectors that include avirulence (AVR) proteins, which are targeted by resistance (R) proteins from wild Solanum species. Most Solanum R genes appear to have coevolved with P. infestans at its center of origin in central Mexico. Various R and Avr genes were recently cloned, and here we catalog characterized R-AVR pairs. We describe the mechanisms that P. infestans employs for evading R protein recognition and discuss partial resistance and partial virulence phenotypes in the context of our knowledge of effector diversity and activity. Genome-wide catalogs of P. infestans effectors are available, enabling effectoromics approaches that accelerate R gene cloning and specificity profiling. Engineering R genes with expanded pathogen recognition has also become possible. Importantly, monitoring effector allelic diversity in pathogen populations can assist in R gene deployment in agriculture.

Publisher

Annual Reviews

Subject

Plant Science

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