Statements in which the resource exists as a subject.
PredicateObject
rdf:type
lifeskim:mentions
pubmed:issue
4
pubmed:dateCreated
2004-2-3
pubmed:databankReference
pubmed:abstractText
The Pseudomonas syringae pv. tomato DC3000 type III secretion system (TTSS) is required for bacterial pathogenicity on plants and elicitation of the hypersensitive response (HR), a programmed cell death (PCD) that occurs on resistant plants. Cosmid pHIR11 enables non-pathogens to elicit an HR dependent upon the TTSS and the effector HopPsyA. We used pHIR11 to determine that effectors HopPtoE, avirulence AvrPphEPto, AvrPpiB1Pto, AvrPtoB, and HopPtoF could suppress a HopPsyA-dependent HR on tobacco and Arabidopsis. Mixed inoculum and Agrobacterium-mediated transient expression experiments confirmed that suppressor action occurred within plant cells. These suppressors, with the exception of AvrPpiB1Pto, inhibited the expression of the tobacco pathogenesis-related (PR) gene PR1a. DC3000 suppressor mutants elicited an enhanced HR consistent with these mutants lacking an HR suppressor. Additionally, HopPtoG was identified as a suppressor on the basis of an enhanced HR produced by a hopPtoG mutant. Remarkably, these proteins functioned to inhibit the ability of the pro-apoptotic protein, Bax to induce PCD in plants and yeast, indicating that these effectors function as anti-PCD proteins in a trans-kingdom manner. The high proportion of effectors that suppress PCD suggests that suppressing plant immunity is one of the primary roles for DC3000 effectors and a central requirement for P. syringae pathogenesis.
pubmed:language
eng
pubmed:journal
pubmed:citationSubset
IM
pubmed:chemical
pubmed:status
MEDLINE
pubmed:month
Feb
pubmed:issn
0960-7412
pubmed:author
pubmed:issnType
Print
pubmed:volume
37
pubmed:owner
NLM
pubmed:authorsComplete
Y
pubmed:pagination
554-65
pubmed:dateRevised
2008-11-21
pubmed:meshHeading
pubmed-meshheading:14756767-Apoptosis, pubmed-meshheading:14756767-Bacterial Proteins, pubmed-meshheading:14756767-Gene Expression Regulation, Bacterial, pubmed-meshheading:14756767-Gene Expression Regulation, Plant, pubmed-meshheading:14756767-Immunity, Innate, pubmed-meshheading:14756767-Molecular Sequence Data, pubmed-meshheading:14756767-Mutation, pubmed-meshheading:14756767-Plant Diseases, pubmed-meshheading:14756767-Plant Proteins, pubmed-meshheading:14756767-Plasmids, pubmed-meshheading:14756767-Proto-Oncogene Proteins, pubmed-meshheading:14756767-Proto-Oncogene Proteins c-bcl-2, pubmed-meshheading:14756767-Pseudomonas syringae, pubmed-meshheading:14756767-Rhizobium, pubmed-meshheading:14756767-Sequence Deletion, pubmed-meshheading:14756767-Signal Transduction, pubmed-meshheading:14756767-Tobacco, pubmed-meshheading:14756767-Virulence, pubmed-meshheading:14756767-Yeasts, pubmed-meshheading:14756767-bcl-2-Associated X Protein
pubmed:year
2004
pubmed:articleTitle
Identification of Pseudomonas syringae type III effectors that can suppress programmed cell death in plants and yeast.
pubmed:affiliation
Plant Science Initiative and Department of Plant Pathology, University of Nebraska, Lincoln, NE 68588-0660, USA.
pubmed:publicationType
Journal Article, Research Support, U.S. Gov't, Non-P.H.S.