The RPP13 [recognition of Hyaloperonospora arabidopsidis (previously known as Peronospora parasitica)] resistance (R) gene in Arabidopsis thaliana exhibits the highest reported level of sequence diversity among known R genes. Consistent with a co-evolutionary model, the matching effector protein ATR13 (A. thaliana-recognized) from H. arabidopsidis reveals extreme levels of allelic diversity. We isolated 23 new RPP13 sequences from a UK metapopulation, giving a total of 47 when combined with previous studies. We used these in functional studies of the A. thaliana accessions for their resistance response to 16 isolates of H. arabidopsidis. We characterized the molecular basis of recognition by the expression of the corresponding ATR13 genes f...
The perception of downy mildew avirulence ( Arabidopsis thaliana Recognized [ATR]) gene products by ...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...
The oomycete pathogen Hyaloperonospora arabidopsidis specifically infects a single host, Arabidopsis...
Plants are constantly exposed to attack by an array of diverse pathogens but lack a somatically adap...
Disease resistance (R) genes are found in plants as either simple (single allelic series) loci, or m...
The RPS2 gene in Arabidopsis thaliana governs resistance to strains of the bacterial pathogen, Pseud...
Pathogen resistance (R) genes of the NBS-LRR class (for nucleotide binding site and leucine-rich rep...
The oomycete Hyaloperonospora arabidopsidis (Hpa) is the causal agent of downy mildew on the model p...
Genetic divergence between populations can lead to reproductive isolation. Hybrid incompatibilities ...
Mechanisms underlying speciation in plants include detrimental (incompatible) genetic interactions b...
This Dissertation presents a comprehensive study of how oomycete pathogens are recognized by the pla...
Interactions between Arabidopsis thaliana and its native obligate oomycete pathogen Hyaloperonospora...
Like other plant-pathogenic oomycetes, downy mildew species of the genus Hyaloperonospora manipulate...
Resistance responses that plants deploy in defence against pathogens are often triggered following a...
The perception of downy mildew avirulence ( Arabidopsis thaliana Recognized [ATR]) gene products by ...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...
The oomycete pathogen Hyaloperonospora arabidopsidis specifically infects a single host, Arabidopsis...
Plants are constantly exposed to attack by an array of diverse pathogens but lack a somatically adap...
Disease resistance (R) genes are found in plants as either simple (single allelic series) loci, or m...
The RPS2 gene in Arabidopsis thaliana governs resistance to strains of the bacterial pathogen, Pseud...
Pathogen resistance (R) genes of the NBS-LRR class (for nucleotide binding site and leucine-rich rep...
The oomycete Hyaloperonospora arabidopsidis (Hpa) is the causal agent of downy mildew on the model p...
Genetic divergence between populations can lead to reproductive isolation. Hybrid incompatibilities ...
Mechanisms underlying speciation in plants include detrimental (incompatible) genetic interactions b...
This Dissertation presents a comprehensive study of how oomycete pathogens are recognized by the pla...
Interactions between Arabidopsis thaliana and its native obligate oomycete pathogen Hyaloperonospora...
Like other plant-pathogenic oomycetes, downy mildew species of the genus Hyaloperonospora manipulate...
Resistance responses that plants deploy in defence against pathogens are often triggered following a...
The perception of downy mildew avirulence ( Arabidopsis thaliana Recognized [ATR]) gene products by ...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...