Effector target-guided engineering of an integrated domain expands the disease resistance profile of a rice NLR immune receptor

Author:

Maidment Josephine HR1ORCID,Shimizu Motoki2ORCID,Bentham Adam R1ORCID,Vera Sham1ORCID,Franceschetti Marina1,Longya Apinya1,Stevenson Clare EM1ORCID,De la Concepcion Juan Carlos1ORCID,Białas Aleksandra3ORCID,Kamoun Sophien3ORCID,Terauchi Ryohei24ORCID,Banfield Mark J1ORCID

Affiliation:

1. Department of Biological Chemistry, John Innes Centre

2. Division of Genomics and Breeding, Iwate Biotechnology Research Center

3. The Sainsbury Laboratory, University of East Anglia, Norwich Research Park

4. Laboratory of Crop Evolution, Graduate School of Agriculture, Kyoto University

Abstract

A subset of plant intracellular NLR immune receptors detect effector proteins, secreted by phytopathogens to promote infection, through unconventional integrated domains which resemble the effector’s host targets. Direct binding of effectors to these integrated domains activates plant defenses. The rice NLR receptor Pik-1 binds the Magnaporthe oryzae effector AVR-Pik through an integrated heavy metal-associated (HMA) domain. However, the stealthy alleles AVR-PikC and AVR-PikF avoid interaction with Pik-HMA and evade host defenses. Here, we exploited knowledge of the biochemical interactions between AVR-Pik and its host target, OsHIPP19, to engineer novel Pik-1 variants that respond to AVR-PikC/F. First, we exchanged the HMA domain of Pikp-1 for OsHIPP19-HMA, demonstrating that effector targets can be incorporated into NLR receptors to provide novel recognition profiles. Second, we used the structure of OsHIPP19-HMA to guide the mutagenesis of Pikp-HMA to expand its recognition profile. We demonstrate that the extended recognition profiles of engineered Pikp-1 variants correlate with effector binding in planta and in vitro, and with the gain of new contacts across the effector/HMA interface. Crucially, transgenic rice producing the engineered Pikp-1 variants was resistant to blast fungus isolates carrying AVR-PikC or AVR-PikF. These results demonstrate that effector target-guided engineering of NLR receptors can provide new-to-nature disease resistance in crops.

Funder

Biotechnology and Biological Sciences Research Council

European Research Council

Royal Golden Jubilee

John Innes Foundation

Gatsby Charitable Foundation

JIC Excellence with Impact

Japan Society for the Promotion of Science

ERASMUS

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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