The powdery mildew resistance genes RPW8.1 and RPW8.2 from Arabidopsis differ from the other isolated plant resistance (R) genes in their predicted protein domains and their resistance spectrum. The two homologous RPW8 genes encode small proteins featuring a predicted amino-terminal transmembrane anchor domain and a coiled-coil domain and confer resistance to a broad spectrum of powdery mildews. Here, we show that Arabidopsis plants expressing the RPW8 genes have enhanced resistance to another biotrophic pathogen, Hyaloperonospora parasitica, raising the possibility that the RPW8 genes may function to enhance salicylic-acid-dependent basal defenses, rather than as powdery-mildew-specific R genes. When overexpressed from their native promote...
Members of the MILDEW RESISTANCE LOCUSO (MLO) gene family confer susceptibility to powdery mildews i...
The perception of downy mildew avirulence ( Arabidopsis thaliana Recognized [ATR]) gene products by ...
To investigate the role of N-terminal domains of plant disease resistance proteins in membrane targe...
Plant disease resistance (R) genes control the recognition of specific pathogens and activate subseq...
<div><p>Powdery mildew fungi form feeding structures called haustoria inside epidermal cells of host...
Powdery mildew fungal pathogens penetrate the plant cell wall and develop a feeding structure called...
The unique plant resistance (R) protein RPW8.1 and RPW8.2 confers broad-spectrum resistance in Arabi...
The RPW8 locus from Arabidopsis thaliana Ms-0 includes two functional paralogous genes (RPW8.1 and R...
The Arabidopsis disease resistance (R) genes RPW8.1 and RPW8.2 couple the recognition of powdery mil...
Ascomycete powdery mildew (PM) fungi belonging to the order of Erysiphales cause diseases on more th...
PubMedID: 10886772To better understand the genetic requirements for R gene-dependent defense activat...
Available from British Library Document Supply Centre- DSC:DXN057033 / BLDSC - British Library Docum...
RPW8 genes are atypical broad-spectrum genes that provide resistance to powdery mildew, downy mildew...
Here, an approach based on natural genetic variation was adopted to analyse powdery mildew resistanc...
Main conclusion: Overexpression of pathogen-induced cysteine-rich transmembrane proteins (PCMs) in A...
Members of the MILDEW RESISTANCE LOCUSO (MLO) gene family confer susceptibility to powdery mildews i...
The perception of downy mildew avirulence ( Arabidopsis thaliana Recognized [ATR]) gene products by ...
To investigate the role of N-terminal domains of plant disease resistance proteins in membrane targe...
Plant disease resistance (R) genes control the recognition of specific pathogens and activate subseq...
<div><p>Powdery mildew fungi form feeding structures called haustoria inside epidermal cells of host...
Powdery mildew fungal pathogens penetrate the plant cell wall and develop a feeding structure called...
The unique plant resistance (R) protein RPW8.1 and RPW8.2 confers broad-spectrum resistance in Arabi...
The RPW8 locus from Arabidopsis thaliana Ms-0 includes two functional paralogous genes (RPW8.1 and R...
The Arabidopsis disease resistance (R) genes RPW8.1 and RPW8.2 couple the recognition of powdery mil...
Ascomycete powdery mildew (PM) fungi belonging to the order of Erysiphales cause diseases on more th...
PubMedID: 10886772To better understand the genetic requirements for R gene-dependent defense activat...
Available from British Library Document Supply Centre- DSC:DXN057033 / BLDSC - British Library Docum...
RPW8 genes are atypical broad-spectrum genes that provide resistance to powdery mildew, downy mildew...
Here, an approach based on natural genetic variation was adopted to analyse powdery mildew resistanc...
Main conclusion: Overexpression of pathogen-induced cysteine-rich transmembrane proteins (PCMs) in A...
Members of the MILDEW RESISTANCE LOCUSO (MLO) gene family confer susceptibility to powdery mildews i...
The perception of downy mildew avirulence ( Arabidopsis thaliana Recognized [ATR]) gene products by ...
To investigate the role of N-terminal domains of plant disease resistance proteins in membrane targe...