Abstract
SummaryThe PhoPQ two-component system, originally described in pectobacteria as PehRS, was previously shown to regulate a single gene,pehA. Using an insertionalphoPmutant ofPectobacterium versatile, we demonstrate that PhoP controls a regulon of at least 116 genes with a large fraction of regulon members specific for pectobacteria. The functions performed by the PhoP controlled genes include transport and metabolism of plant-derived carbon sources (polygalacturonate, arabinose and citrate), modification of bacterial cell envelope and stress resistance. High concentrations of calcium and magnesium ions were found to abolish the PhoPQ-dependent transcription activation. Reduced PhoP expression and minimisation of PhoP dependence of regulon members’ expression in the cells isolated from rotten potato tuber tissues suggest that PhoPQ system may adjust expression levels of multiple virulence-related genes during the course ofP. versatile-host plant pathosystem development.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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