Genetic Organization of the Pantoea stewartii subsp. stewartii hrp Gene Cluster and Sequence Analysis of the hrpA, hrpC, hrpN, and wtsE Operons
DNA, Bacterial
0301 basic medicine
Molecular Sequence Data
Protein Serine-Threonine Kinases
Microbiology
03 medical and health sciences
Bacterial Proteins
type III secretion
Erwinia stewartii
Pseudomonas
Operon
Stewart's wilt
Drosophila Proteins
Janus Kinases
Plant Diseases
Genetic Complementation Test
Botany
Chromosome Mapping
Protein-Tyrosine Kinases
QR1-502
DNA-Binding Proteins
Mutagenesis, Insertional
Genes, Bacterial
QK1-989
Multigene Family
DNA Transposable Elements
Mutagenesis, Site-Directed
Erwinia
Bacterial Outer Membrane Proteins
DOI:
10.1094/mpmi.2001.14.10.1213
Publication Date:
2007-05-11T09:11:25Z
AUTHORS (6)
ABSTRACT
The hrp/wts gene cluster of Pantoea stewartii subsp. stewartii is required for pathogenicity on sweet corn and the ability to elicit a hypersensitive response (HR) in tobacco. Site-directed transposon mutagenesis and nucleotide sequencing were used to identify hrp/wts genes within the left 20 kb of this cluster. Seventeen open reading frames (ORFs) comprise seven genetic complementation groups. These ORFs share homology with hrp and dsp genes from Erwinia amylovora, Erwinia chrysanthemi, and Pseudomonas syringae pathovars and have been designated, in map order, wtsF, wtsE, hrpN, hrpV, hrpT, hrcC, hrpG, hrpF, hrpE, hrpD, hrcJ, hrpB, hrpA, hrpS, hrpY, hrpX, and hrpL. Putative hrp consensus promoter sequences were identified upstream of hrpA, hrpF, hrpN, and wtsE. Expression of the hrpA, hrpC, and wtsE operons was regulated by HrpS. Transposon mutations in all of the hrp operons abolished pathogenicity and HR elicitation, except for the hrpN and hrpV mutants, which were still pathogenic. hrpS, hrpXY, and hrpL regulatory mutations abolished HrpN synthesis, whereas secretory mutations in the hrpC, hrpA, and hrpJ operons permitted intracellular HrpN synthesis. wtsEF mutants were not pathogenic but still produced HrpN and elicited the HR. wtsE encodes a 201-kDa protein that is similar to DspE in E. amylovora and AvrE in P. syringae pv. tomato, suggesting that this protein is a major virulence factor involved in the elicitation of water-soaked lesions.
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