selected publications
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article
- An HMA-like integrated domain in the wheat tandem kinase WTK4 recognises an RNase-like pathogen effector. Nature Communications. 2026
- Dual recognition of structurally unrelated mildew effectors underlies the broad-spectrum resistance of Pm3e in wheat. Nature Communications. 2025
- Wheat tandem kinase RWT4 directly binds a fungal effector to activate defense. Nature Genetics. 2025
- A fictional field case study to understand the genetic basis of host-fungal pathogen interactions using the wheat powdery mildew-wheat pathosystem. Journal of Biological Education. 2024
- Analysis of a global wheat panel reveals a highly diverse introgression landscape and provides evidence for inter-homoeologue chromosomal recombination. Theoretical and Applied Genetics. 2024
- Mutagenesis of Wheat Powdery Mildew Reveals a Single Gene Controlling Both NLR and Tandem Kinase-Mediated Immunity. Molecular Plant-microbe Interactions. 2024
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document
- An HMA-like integrated domain in the wheat tandem kinase WTK4 recognises an RNase-like pathogen effector 2025
- Analysis of a diverse wheat germplasm panel reveals a highly diverse introgression landscape and provides evidence for inter-homoeolog chromosomal recombination 2024
- Direct binding of a fungal effector by the wheat RWT4 tandem kinase activates defense 2024
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thesis