Many gram-negative pathogenic bacteria directly translocate effector proteins into eukaryotic host cells via type III delivery systems. Type III effector proteins are determinants of virulence on susceptible plant hosts; they are also the proteins that trigger specific disease resistance in resistant plant hosts. Evolution of type III effectors is dominated by competing forces: the likely requirement for conservation of virulence function, the avoidance of host defenses, and possible adaptation to new hosts. To understand the evolutionary history of type III effectors in Pseudomonas syringae, we searched for homologs to 44 known or candidate P. syringae type III effectors and two effector chaperones. We examined 24 gene families for distrib...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Closely related pathogens may differ dramatically in host range, but the molecular, genetic, and evo...
Many gram-negative pathogenic bacteria directly translocate effector proteins into eukaryotic host c...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Pseudomonas syringae strains deliver variable numbers of type III effector proteins into plant cells...
Pseudomonas syringae strains deliver variable numbers of type III effector proteins into plant cells...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Closely related pathogens may differ dramatically in host range, but the molecular, genetic, and evo...
Many gram-negative pathogenic bacteria directly translocate effector proteins into eukaryotic host c...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Pseudomonas syringae strains deliver variable numbers of type III effector proteins into plant cells...
Pseudomonas syringae strains deliver variable numbers of type III effector proteins into plant cells...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Closely related pathogens may differ dramatically in host range, but the molecular, genetic, and evo...