In Arabidopsis thaliana, non-pathogenic, root-colonizing Pseudomonas fluorescens WCS417r bacteria trigger an induced systemic resistance (ISR) that is phenotypically similar to pathogen-induced systemic acquired resistance (SAR). In contrast to SAR, WCS417r-mediated ISR is controlled by a salicylic acid (SA)-independent signalling pathway that requires an intact response to the plant hormones jasmonic acid (JA) and ethylene (ET). Arabidopsis accessions RLD1 and Ws-0 fail to express ISR against Pseudomonas syringae pv. tomato and show enhanced disease susceptibility to this pathogen. Genetic analysis of progeny from crosses between WCS417r-responsive and non-responsive accessions demonstrated that ISR inducibility and basal resistance agains...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Selected strains of rhizosphere bacteria have been shown to reduce disease by activating a resistan...
Selected nonpathogenic, root-colonizing bacteria are able to elicit induced systemic resistance (ISR...
In Arabidopsis thaliana, non-pathogenic, root-colonizing Pseudomonas fluorescens WCS417r bacteria tr...
Selected nonpathogenic rhizobacteria with biological disease control activity are able to elicit an ...
Selected nonpathogenic rhizobacteria with biological disease control activity are able to elicit an ...
In Arabidopsis, the rhizobacterial strain Pseudomonas fluorescens WCS417r triggers an induced system...
Selected strains of non-pathogenic rhizobacteria have the ability to trigger an induced systemic res...
Upon primary pathogen attack, plants activate a diverse array of defense mechanisms at the site of p...
In Arabidopsis, the rhizobacterial strain Pseudomonas fluorescens WCS417r triggers an induced system...
Selected strains of non-pathogenic rhizobacteria have the ability to trigger an induced systemic res...
Selected strains of rhizosphere bacteria have been shown to reduce disease by activating a resistanc...
Rhizobacteria are present in large numbers on the root surface, where plant exudates and lysates pro...
Different forms of biologically induced disease resistance have been identified in plants. Followin...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Selected strains of rhizosphere bacteria have been shown to reduce disease by activating a resistan...
Selected nonpathogenic, root-colonizing bacteria are able to elicit induced systemic resistance (ISR...
In Arabidopsis thaliana, non-pathogenic, root-colonizing Pseudomonas fluorescens WCS417r bacteria tr...
Selected nonpathogenic rhizobacteria with biological disease control activity are able to elicit an ...
Selected nonpathogenic rhizobacteria with biological disease control activity are able to elicit an ...
In Arabidopsis, the rhizobacterial strain Pseudomonas fluorescens WCS417r triggers an induced system...
Selected strains of non-pathogenic rhizobacteria have the ability to trigger an induced systemic res...
Upon primary pathogen attack, plants activate a diverse array of defense mechanisms at the site of p...
In Arabidopsis, the rhizobacterial strain Pseudomonas fluorescens WCS417r triggers an induced system...
Selected strains of non-pathogenic rhizobacteria have the ability to trigger an induced systemic res...
Selected strains of rhizosphere bacteria have been shown to reduce disease by activating a resistanc...
Rhizobacteria are present in large numbers on the root surface, where plant exudates and lysates pro...
Different forms of biologically induced disease resistance have been identified in plants. Followin...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Selected strains of rhizosphere bacteria have been shown to reduce disease by activating a resistan...
Selected nonpathogenic, root-colonizing bacteria are able to elicit induced systemic resistance (ISR...