Multicellular eukaryotic organisms are attacked by numerous parasites from diverse phyla, often simultaneously or sequentially. An outstanding question in these interactions is how hosts integrate signals induced by the attack of different parasites. We used a model system comprised of the plant host Arabidopsis thaliana, the hemibiotrophic bacterial phytopathogen Pseudomonas syringae, and herbivorous larvae of the moth Trichoplusia ni (cabbage looper) to characterize mechanisms involved in systemic-induced susceptibility (SIS) to T. ni herbivory caused by prior infection by virulent P. syringae. We uncovered a complex multilayered induction mechanism for SIS to herbivory. In this mechanism, antiherbivore defenses that depend on signaling v...
Plants are exposed to very different attackers, including microbial pathogens and herbivorous insect...
Plants possess inducible defense mechanisms to effectively combat invasion by microbial pathogens o...
To protect themselves from disease, plants have evolved sophisticated defence mechanisms in which th...
Multicellular eukaryotic organisms are attacked by numerous parasites from diverse phyla, often simu...
Multicellular eukaryotic organisms are attacked by numerous parasites from diverse phyla, often simu...
Plants possess inducible defence mechanisms to protect themselves against different types of microbi...
Plants possess inducible defence mechanisms to protect themselves against different types of microb...
Plant defenses against pathogens and insects are regulated differentially by cross-communicating sig...
Beneficial soil microbes can promote plant growth and induce systemic resistance (ISR) in abovegroun...
Plants are frequently attacked by a multitude of invaders, i.e. herbivorous insects or microbial pat...
An important question in plant defense signaling research is: how are plants capable of integrating ...
Evolution has provided plants with sophisticated defensive strategies to "perceive" attack by pathog...
Beneficial soil microbes can promote plant growth and induce systemic resistance (ISR) in abovegroun...
Three plant signaling molecules play a dominant role in the regulation of defenses in a number of p...
Three plant signaling molecules play a dominant role in the regulation of defences in a number of pl...
Plants are exposed to very different attackers, including microbial pathogens and herbivorous insect...
Plants possess inducible defense mechanisms to effectively combat invasion by microbial pathogens o...
To protect themselves from disease, plants have evolved sophisticated defence mechanisms in which th...
Multicellular eukaryotic organisms are attacked by numerous parasites from diverse phyla, often simu...
Multicellular eukaryotic organisms are attacked by numerous parasites from diverse phyla, often simu...
Plants possess inducible defence mechanisms to protect themselves against different types of microbi...
Plants possess inducible defence mechanisms to protect themselves against different types of microb...
Plant defenses against pathogens and insects are regulated differentially by cross-communicating sig...
Beneficial soil microbes can promote plant growth and induce systemic resistance (ISR) in abovegroun...
Plants are frequently attacked by a multitude of invaders, i.e. herbivorous insects or microbial pat...
An important question in plant defense signaling research is: how are plants capable of integrating ...
Evolution has provided plants with sophisticated defensive strategies to "perceive" attack by pathog...
Beneficial soil microbes can promote plant growth and induce systemic resistance (ISR) in abovegroun...
Three plant signaling molecules play a dominant role in the regulation of defenses in a number of p...
Three plant signaling molecules play a dominant role in the regulation of defences in a number of pl...
Plants are exposed to very different attackers, including microbial pathogens and herbivorous insect...
Plants possess inducible defense mechanisms to effectively combat invasion by microbial pathogens o...
To protect themselves from disease, plants have evolved sophisticated defence mechanisms in which th...