Fine-Mapping the Wheat Snn1 Locus Conferring Sensitivity to the Parastagonospora nodorum Necrotrophic Effector SnTox1 Using an Eight Founder Multiparent Advanced Generation Inter-Cross Population

Author:

Cockram James11,Scuderi Alice12,Barber Toby1,Furuki Eiko3,Gardner Keith A1,Gosman Nick1,Kowalczyk Radoslaw14,Phan Huyen P3,Rose Gemma A1,Tan Kar-Chun3,Oliver Richard P3,Mackay Ian J1

Affiliation:

1. John Bingham Laboratory, National Institute of Agricultural Botany (NIAB), Huntington Road, Cambridge, CB3 0LE, United Kingdom

2. Department of Drug Science and Products for Health, University of Messina, Sicily, 98122, Italy

3. Centre for Crop Disease Management, Curtin University, WA6845, Australia

4. Faculty of Life Sciences, University of Manchester, M13 9PL, United Kingdom

Abstract

Abstract The necrotrophic fungus Parastagonospora nodorum is an important pathogen of one of the world’s most economically important cereal crops, wheat (Triticum aestivum L.). P. nodorum produces necrotrophic protein effectors that mediate host cell death, providing nutrients for continuation of the infection process. The recent discovery of pathogen effectors has revolutionized disease resistance breeding for necrotrophic diseases in crop species, allowing often complex genetic resistance mechanisms to be broken down into constituent parts. To date, three effectors have been identified in P. nodorum. Here we use the effector, SnTox1, to screen 642 progeny from an eight-parent multiparent advanced generation inter-cross (i.e., MAGIC) population, genotyped with a 90,000-feature single-nucleotide polymorphism array. The MAGIC founders showed a range of sensitivity to SnTox1, with transgressive segregation evident in the progeny. SnTox1 sensitivity showed high heritability, with quantitative trait locus analyses fine-mapping the Snn1 locus to the short arm of chromosome 1B. In addition, a previously undescribed SnTox1 sensitivity locus was identified on the long arm of chromosome 5A, termed here QSnn.niab-5A.1. The peak single-nucleotide polymorphism for the Snn1 locus was converted to the KASP genotyping platform, providing breeders and researchers a simple and cheap diagnostic marker for allelic state at Snn1.

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

Reference45 articles.

1. Purification and characterization of a host-selective necrosis toxin from Pyrenophora tritici-repentis.;Ballance;Physiol. Mol. Plant Pathol.,1989

2. Ballance, G. M., L. Lamari, and C. C. Nermoer, 1996 Cloning expression and occurrence of the gene encoding the Ptr necrosis toxin from Pyrenophora tritici-repentis. Mol Plant Pathol. Available at: http://www.bspp.org.uk/mppol/1996/1209ballance/. Accessed October 1, 2015.

3. Bates, D., M. Maechler, B. Bolker, and S. Walker, 2013 Lme4: Linear mixed-effects models using Eigen and S4. R package version 1.0–5. Available at: http://CRAN.R-project.org/package=lme4/. Accessed October 1, 2015.

4. From mutations to MAGIC: resources for gene discovery, validation and delivery in crop plants.;Cavanagh;Curr. Opin. Plant Biol.,2008

5. A single gene encodes a selective toxin causal to the development of tan spot of wheat.;Ciuffetti;Plant Cell,1997

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