Gene cluster of Pseudomonas syringae pv. "phaseolicola" controls pathogenicity of bean plants and hypersensitivity of nonhost plants
- 1 November 1986
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 168 (2), 512-522
- https://doi.org/10.1128/jb.168.2.512-522.1986
Abstract
Loss of the ability of Pseudomonas syringae pv. "phaseolicola" NPS3121 to elicit a hypersensitive response on tobacco and other nonhost plants was associated with loss of pathogenicity on the susceptible host bean. Eight independent, prototrophic transposon Tn5 insertion mutants which had lost the ability to elicit a hypersensitive response on tobacco plants were identified. Six of these mutants no longer produced disease lesions on primary leaves of the susceptible bean cultivar Red Kidney and failed to elicit a hypersensitive response on the resistant bean cultivar Red Mexican and on the nonhost plants tomato, cowpea, and soybean. The two remaining mutants had reduced pathogenicity on Red Kidney bean and elicited variable hypersensitive responses on the other plants tested. Southern blot analysis indicated that each mutant carried a single independent Tn5 insertion in one of three EcoRI fragments of about 17, 7, and 5 kilobases. Marker exchange mutagenesis further supported the conclusion that the pleiotropic mutant phenotype was not associated with multiple Tn5 insertions. A genomic library of the wild-type strain was constructed in the cosmid vector pLAFR3. A recombinant plasmid, designated pPL6, that carried P. syringae pv. "phaseolicola" genomic sequences was identified by colony hybridization. This plasmid restored the wild-type phenotype to all but one mutant, suggesting that genes affected by the insertions were clustered. Structural analysis of pPL6 and the wild-type genome indicated that the 17- and 5-kilobase EcoRI fragments were contiguous in the strain NPS3121 genome.This publication has 31 references indexed in Scilit:
- The Use of Transposon Mutagenesis in the Isolation of Nutritional and Virulence Mutants in Two Pathovars ofPseudomonas syringaePhytopathology®, 1985
- Inhibition by Antibacterial Compounds of the Hypersensitive Reaction Induced byPseudomonas pisiin TobaccoPhytopathology®, 1982
- Inhibition of the hypersensitive reaction of soybean leaves to incompatible Pseudomonas spp. by blasticidin S, streptomycin or elevated temperaturePhysiological Plant Pathology, 1981
- Different Induction Periods for Hypersensitivity in Pepper toXanthomonas vesicatoriaDetermined with Antimicrobial AgentsPhytopathology®, 1981
- Broad host range DNA cloning system for gram-negative bacteria: construction of a gene bank of Rhizobium meliloti.Proceedings of the National Academy of Sciences, 1980
- Lipopolysaccharide Composition of the Wilt Pathogen, Pseudomonas solanacearumPlant Physiology, 1980
- Single cell colonies of Xanthomonas malvacearum in susceptible and immune cotton leaves and the local resistant response to colonies in immune leavesPhysiological Plant Pathology, 1979
- Development of bacterial populationsin vivoin relation to plant pathogenicityNew Zealand Journal of Agricultural Research, 1974
- The Quantitative Relation Between Plant and Bacterial Cells Involved in the Hypersensitive ReactionPhytopathology®, 1974
- The Growth of Pseudomonas phaseolicola and Related Plant Pathogens in vivoJournal of General Microbiology, 1966