ORGANIZATION OF THE HRP GENE-CLUSTER AND NUCLEOTIDE-SEQUENCE OF THE HRPL GENE FROM PSEUDOMONAS-SYRINGAE PV MORSPRUNORUM

Authors
Citation
Lz. Liang et Al. Jones, ORGANIZATION OF THE HRP GENE-CLUSTER AND NUCLEOTIDE-SEQUENCE OF THE HRPL GENE FROM PSEUDOMONAS-SYRINGAE PV MORSPRUNORUM, Phytopathology, 85(1), 1995, pp. 118-123
Citations number
35
Categorie Soggetti
Plant Sciences
Journal title
ISSN journal
0031949X
Volume
85
Issue
1
Year of publication
1995
Pages
118 - 123
Database
ISI
SICI code
0031-949X(1995)85:1<118:OOTHGA>2.0.ZU;2-M
Abstract
Pseudomonas syringae pv. morsprunorum PM7 is pathogenic to cherry and induces the hypersensitive response (HR) in tobacco. Six of 1,300 Tn5 mutants from strain PM7 neither elicit the HR in tobacco nor produce n ecrotic lesions in cherry plantlets. Plasmid pPM419, isolated from a g enomic DNA library of wild-type strain PM7, restored the ability to ca use a HR in five of the mutants. Restriction enzyme analysis of pPM419 revealed a 37-kilobase (kb) insert of genomic DNA from P. s. morsprun orum PM7. Tn3-spice mutagenesis of pPM419 and a second plasmid clone, pPM41, followed by marker exchange into the genome of P. s, morsprunor um PM7, indicated a 22-kb DNA fragment from P. s. morsprunorum PM7 has genes for elicitation of necrotic lesions in cherry plantlets and HR in tobacco. Complementation studies revealed that the hrp region of P. s, morsprunorum PM7 is organized into eight putative transcriptional units. Units II, VI, and VII exhibit DNA homology with the hrpI, hrpH, and hrpZ genes, respectively, of P. s. syringae 61. The nucleotide se quence of hrpL, the first transcriptional unit in the hrp cluster of P , s. morsprunorum PM7, encodes a polypeptide of 185 amino acids that e xhibits 99% identity and 96% similarity with HrpL of P. s. syringae 61 . Two transcriptional start sites, P1 and P2, located 63 and 25 bp ups tream of the hrpL start codon, were identified by primer extension ana lysis. The -12 and -24 regions of the putative P2 promoter resemble a sigma(54) consensus sequence.