Colonisation of plant roots by selected beneficial Trichoderma fungi or Pseudomonas bacteria can result in the activation of a systemic defence response that is effective against a broad spectrum of pathogens. In Arabidopsis thaliana, induced systemic resistance (ISR) triggered by the rhizobacterial strain Pseudomonas fluorescens WCS417r is regulated by a jasmonic acid- and ethylene-dependent defence signalling pathway. Jasmonic acid and ethylene also play a role in Trichoderma-induced resistance. To further investigate the similarities between rhizobacteria- and Trichoderma-induced resistance, we studied the response of Arabidopsis to root colonisation by Trichoderma asperellum T34. In many aspects T34-ISR was similar to WCS417r-ISR. First...
Rhizobacteria are present in large numbers on the root surface, where plant exudates and lysates pro...
Upon appropriate stimulation, plants can develop an enhanced capacity to express infection-induced c...
Beneficial microbes in the microbiome of plant roots improve plant health. Induced systemic resistan...
Colonisation of plant roots by selected beneficial Trichoderma fungi or Pseudomonas bacteria can res...
Colonisation of plant roots by selected beneficial Trichoderma fungi or Pseudomonas bacteria can res...
To defend themselves against pathogens, plants can activate a wide array of inducible defense mechan...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Plants possess inducible resistance mechanisms through which they can regulate their defense respons...
To protect themselves from disease, plants have evolved sophisticated defence mechanisms in which th...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
To protect themselves from disease, plants have evolved sophisticated defence mechanisms in which th...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Plants develop an enhanced defensive capacity against a broad spectrum of plant pathogens after colo...
Different forms of biologically induced disease resistance have been identified in plants. Followin...
Plants develop an enhanced defensive capacity against a broad spectrum of plant pathogens after colo...
Rhizobacteria are present in large numbers on the root surface, where plant exudates and lysates pro...
Upon appropriate stimulation, plants can develop an enhanced capacity to express infection-induced c...
Beneficial microbes in the microbiome of plant roots improve plant health. Induced systemic resistan...
Colonisation of plant roots by selected beneficial Trichoderma fungi or Pseudomonas bacteria can res...
Colonisation of plant roots by selected beneficial Trichoderma fungi or Pseudomonas bacteria can res...
To defend themselves against pathogens, plants can activate a wide array of inducible defense mechan...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Plants possess inducible resistance mechanisms through which they can regulate their defense respons...
To protect themselves from disease, plants have evolved sophisticated defence mechanisms in which th...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
To protect themselves from disease, plants have evolved sophisticated defence mechanisms in which th...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Plants develop an enhanced defensive capacity against a broad spectrum of plant pathogens after colo...
Different forms of biologically induced disease resistance have been identified in plants. Followin...
Plants develop an enhanced defensive capacity against a broad spectrum of plant pathogens after colo...
Rhizobacteria are present in large numbers on the root surface, where plant exudates and lysates pro...
Upon appropriate stimulation, plants can develop an enhanced capacity to express infection-induced c...
Beneficial microbes in the microbiome of plant roots improve plant health. Induced systemic resistan...