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The New Phytologist|February 18, 2018
Distinct domains of the AVRPM3<sup>A2/F2</sup> avirulence protein from wheat powdery mildew are involved in immune receptor recognition and putative effector functionKaitlin Elyse McNally, Fabrizio Menardo, Linda Lüthi, et al.The Plant Cell|October 11, 2015
Multiple Avirulence Loci and Allele-Specific Effector Recognition Control the Pm3 Race-Specific Resistance of Wheat to Powdery MildewSalim Bourras, Kaitlin Elyse McNally, Roi Ben-David, et al.Horticulture Research|February 20, 2022
Genetic architecture and genomic predictive ability of apple quantitative traits across environmentsMichaela Jung, Beat Keller, Morgane Roth, et al.Plos One|November 27, 2013
A physical map of the short arm of wheat chromosome 1AJames Breen, Thomas Wicker, Margarita Shatalina, et al.Plant Physiology|March 19, 2020
The NLR-Annotator Tool Enables Annotation of the Intracellular Immune Receptor RepertoireBurkhard Steuernagel, Kamil Witek, Simon G Krattinger, et al.The New Phytologist|December 10, 2016
AvrPm2 encodes an RNase-like avirulence effector which is conserved in the two different specialized forms of wheat and rye powdery mildew fungusCoraline R Praz, Salim Bourras, Fansong Zeng, et al.The New Phytologist|November 11, 2020
A highly differentiated region of wheat chromosome 7AL encodes a Pm1a immune receptor that recognizes its corresponding AvrPm1a effector from Blumeria graminisTim Hewitt, Marion C Müller, István Molnár, et al.Nature Plants|June 19, 2024
The wheat powdery mildew resistance gene Pm4 also confers resistance to wheat blastTom O'Hara, Andrew Steed, Rachel Goddard, et al.Genome Biology|June 18, 2025
k-mer-based GWAS in a wheat collection reveals novel and diverse sources of powdery mildew resistanceBenjamin Jaegle, Yoav Voichek, Max Haupt, et al.Nature Genetics|July 16, 2013
The wheat powdery mildew genome shows the unique evolution of an obligate biotrophThomas Wicker, Simone Oberhaensli, Francis Parlange, et al.Pageof 21