Abstract
Phenolic plant metabolites such as acetosyringone induce transcription of the virulence (vir) genes of Agrobacterium tumefaciens through the transmembrane VirA protein. We report here that certain sugars induce the vir genes synergistically with phenolic inducers by way of a distinct regulatory pathway that includes VirA and a chromosomally encoded virulence protein, ChvE. Sequence comparison showed that ChvE is a periplasmic galactose-binding protein corresponding to the GBP1 protein isolated from Agrobacterium radiobacter. Like homologous sugar-binding proteins in Escherichia coli, ChvE was required for chemotaxis toward galactose and several other sugars. These sugars strongly induced vir gene expression in wild-type cells when acetosyringone was absent or present in low concentrations. Mutations in chvE abolished vir gene induction by sugars and resulted in a limited host range for infection but did not affect vir gene induction by acetosyringone. A mutant lacking the periplasmic domain of VirA exhibited the same regulatory phenotype and limited host range as chvE mutants. These data show that the vir genes are regulated by two separate classes of plant-derived inducers by way of distinct regulatory pathways that can be separated by mutation. Induction by sugars is essential for infection of some but not all plant hosts.
MeSH Terms
Amino Acid Sequence
Bacterial Proteins/genetics,metabolism
Carbohydrates/pharmacology
Cell Membrane/metabolism
Chemotaxis/drug effects
Genes, Viral/drug effects
Kinetics
Membrane Proteins/metabolism
Molecular Sequence Data
Plasmids
Rhizobium/drug effects,genetics,pathogenicity
Sequence Homology, Nucleic Acid
Signal Transduction
Virulence/genetics
Virulence Factors
beta-Galactosidase/genetics
Chemicals
Bacterial Proteins
Carbohydrates
Membrane Proteins
Virulence Factors
beta-Galactosidase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Cangelosi G A
Department of Microbiology, University of Washington, Seattle, 98195.
Ankenbauer R G
Nester E W
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