Area of research
Plant Science · Genetics
Research interest
Research interests include Wheat and Barley Genetics and Pathology, Plant Disease Resistance and Genetics, Plant-Microbe Interactions and Immunity, and Genetic Mapping and Diversity in Plants and Animals.
Spatial transcriptomics reveals expression gradients in developing wheat inflorescences at cellular resolution.
Mapped deletions in a publicly available Fast Neutron mutant collection for gene identification in pea.
Genomic and genetic insights into Mendel's pea genes.
Septoria tritici blotch resistance gene Stb15 encodes a lectin receptor-like kinase.
Comprehensive mutant chemotyping reveals embedding of a lineage-specific biosynthetic gene cluster in wider plant metabolism.
Rebalancing the seed proteome following deletion of vicilin-related genes in pea (Pisum sativum L.).
A dataset of tissue-specific gene expression dynamics during seed development in Brassica.
A barley MLA immune receptor is activated by a fungal nonribosomal peptide effector for disease susceptibility.
Harnessing landrace diversity empowers wheat breeding
Harnessing landrace diversity empowers wheat breeding.
Spatial Transcriptomics Reveals Expression Gradients in Developing Wheat Inflorescences at Cellular Resolution
Genomic and Genetic Insights into Mendel’s Pea Genes
A complex receptor locus confers responsiveness to necrosis and ethylene-inducing like peptides in Brassica napus.
A barley <scp>MLA</scp> immune receptor is activated by a fungal nonribosomal peptide effector for disease susceptibility
A chromosome-scale reference genome of grasspea (Lathyrus sativus).
Pathogen lifestyle determines host genetic signature of quantitative disease resistance loci in oilseed rape (Brassica napus).
Genomic and Genetic Insights into Mendel’s Pea Genes
The wheat stem rust resistance gene Sr43 encodes an unusual protein kinase.
A wheat kinase and immune receptor form host-specificity barriers against the blast fungus.
Genomics and biochemical analyses reveal a metabolon key to β-L-ODAP biosynthesis in Lathyrus sativus
Single amino acid change alters specificity of the multi-allelic wheat stem rust resistance locus SR9
Single amino acid change alters specificity of the multi-allelic wheat stem rust resistance locus SR9.
Genomics and biochemical analyses reveal a metabolon key to β-L-ODAP biosynthesis in Lathyrus sativus.
Recombinant inbred lines derived from wide crosses in Pisum.
Harnessing Landrace Diversity Empowers Wheat Breeding for Climate Resilience
Septoria tritici blotch resistance gene<i>Stb15</i>encodes a lectin receptor-like kinase
Author Correction: Wheat Pm4 resistance to powdery mildew is controlled by alternative splice variants encoding chimeric proteins.
Pathogen lifestyle determines host genetic signature of quantitative disease resistance loci in oilseed rape ( <i>Brassica napus</i> )
Recognition of Necrosis and Ethylene-inducing like peptides confers disease resistance in <i>Brassica napus</i> and is modulated by <i>BSK1</i> in Arabidopsis
Integrated Phenomics and Genomics reveals genetic loci associated with inflorescence growth in <i>Brassica napus</i>