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Molecular Evolution of Pseudomonas syringae Type III Secreted Effector Proteins.


ABSTRACT: Diverse Gram-negative pathogens like Pseudomonas syringae employ type III secreted effector (T3SE) proteins as primary virulence factors that combat host immunity and promote disease. T3SEs can also be recognized by plant hosts and activate an effector triggered immune (ETI) response that shifts the interaction back toward plant immunity. Consequently, T3SEs are pivotal in determining the virulence potential of individual P. syringae strains, and ultimately help to restrict P. syringae pathogens to a subset of potential hosts that are unable to recognize their repertoires of T3SEs. While a number of effector families are known to be present in the P. syringae species complex, one of the most persistent challenges has been documenting the complex variation in T3S

SUBMITTER: Dillon MM 

PROVIDER: S-EPMC6460904 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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