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Molecular Genetics and Genomics : MGG|July 19, 2015
Marker development, saturation mapping, and high-resolution mapping of the Septoria nodorum blotch susceptibility gene Snn3-B1 in wheatGongjun Shi, Zengcui Zhang, Timothy L Friesen, et al.
The Plant Journal : for Cell and Molecular Biology|December 24, 2010
Two putatively homoeologous wheat genes mediate recognition of SnTox3 to confer effector-triggered susceptibility to Stagonospora nodorumZengcui Zhang, Timothy L Friesen, Steven S Xu, et al.
Genetics|September 21, 2005
Molecular characterization of the major wheat domestication gene QKristin J Simons, John P Fellers, Harold N Trick, et al.
The Plant Journal : for Cell and Molecular Biology|February 12, 2021
A protein kinase-major sperm protein gene hijacked by a necrotrophic fungal pathogen triggers disease susceptibility in wheatZengcui Zhang, Katherine L D Running, Sudeshi Seneviratne, et al.
Molecular Breeding : New Strategies in Plant Improvement|June 20, 2023
Genome-wide association mapping of resistance to the foliar diseases septoria nodorum blotch and tan spot in a global winter wheat collectionAmanda R Peters Haugrud, Gongjun Shi, Sudeshi Seneviratne, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 2, 2011
Duplication and partitioning in evolution and function of homoeologous Q loci governing domestication characters in polyploid wheatZengcui Zhang, Harry Belcram, Piotr Gornicki, et al.
Molecular Plant-Microbe Interactions : MPMI|March 30, 2025
Protein Kinase-Major Sperm Protein (PK-MSP) Genes Mediate Recognition of the Fungal Necrotrophic Effector SnTox3 to Cause Septoria nodorum Blotch in WheatZengcui Zhang, Katherine L D Running, Sudeshi Seneviratne, et al.
Plant Disease|October 30, 2024
Evaluation of Durum and Hard Red Spring Wheat Panels for Sensitivity to Necrotrophic Effectors Produced by <i>Parastagonospora nodorum</i>Agnes Szabo-Hever, Katherine L D Running, Sudeshi Seneviratne, et al.
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