Many bacterial pathogens employ a type III secretion system to deliver type III secreted effectors (T3SEs) into host cells, where they interact directly with host substrates to modulate defense pathways and promote disease. This interaction creates intense selective pressures on these secreted effectors, necessitating rapid evolution to overcome host surveillance systems and defenses. Using computational and evolutionary approaches, we have identified numerous mosaic and truncated T3SEs among animal and plant pathogens. We propose that these secreted virulence genes have evolved through a shuffling process we have called ‘‘terminal reassortment.’ ’ In terminal reassortment, existing T3SE termini are mobilized within the genome, creating ran...
Type 3 secretion systems (T3SSs) are essential components of two complex bacterial machineries: the ...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Many gram-negative pathogenic bacteria directly translocate effector proteins into eukaryotic host c...
Many bacterial pathogens employ a type III secretion system to deliver type III secreted effectors (...
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...
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...
International audienceType 3 secretion systems (T3SSs) are essential components of two complex bacte...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Type 3 secretion systems (T3SSs) are essential components of two complex bacterial machineries: the ...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Many gram-negative pathogenic bacteria directly translocate effector proteins into eukaryotic host c...
Many bacterial pathogens employ a type III secretion system to deliver type III secreted effectors (...
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...
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...
International audienceType 3 secretion systems (T3SSs) are essential components of two complex bacte...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Type 3 secretion systems (T3SSs) are essential components of two complex bacterial machineries: the ...
Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) p...
Many gram-negative pathogenic bacteria directly translocate effector proteins into eukaryotic host c...