Putative Exopolysaccharide Synthesis Genes Influence Pseudomonas aeruginosa Biofilm Development
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Open Access
- 15 July 2004
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 186 (14) , 4449-4456
- https://doi.org/10.1128/jb.186.14.4449-4456.2004
Abstract
An analysis of the Pseudomonas aeruginosa genomic sequence revealed three gene clusters, PA1381-1393, PA2231-2240, and PA3552-3558, in addition to the alginate biosynthesis gene cluster, which appeared to encode functions for exopolysaccharide (EPS) biosynthesis. Recent evidence indicates that alginate is not a significant component of the extracellular matrix in biofilms of the sequenced P. aeruginosa strain PAO1. We hypothesized that at least one of the three potential EPS gene clusters revealed by genomic sequencing is an important component of P. aeruginosa PAO1 biofilms. Thus, we constructed mutants with chromosomal insertions in PA1383, PA2231, and PA3552. The mutant with a PA2231 defect formed thin unstructured abnormal biofilms. The PA3552 mutant formed structured biofilms that appeared different from those formed by the parent, and the PA1383 mutant formed structured biofilms that were indistinguishable from those formed by the parent. Consistent with a previous report, we found that polysaccharides were one component of the extracellular matrix, which also contained DNA. We suggest that the genes that were inactivated in our PA2231 mutant are required for the production of an EPS, which, although it may be a minor constituent of the matrix, is critical for the formation of P. aeruginosa PAO1 biofilms.Keywords
This publication has 38 references indexed in Scilit:
- Involvement of bacterial migration in the development of complex multicellular structures in Pseudomonas aeruginosa biofilmsMolecular Microbiology, 2003
- Identification, Timing, and Signal Specificity ofPseudomonas aeruginosaQuorum-Controlled Genes: a Transcriptome AnalysisJournal of Bacteriology, 2003
- Extracellular DNA Required for Bacterial Biofilm FormationScience, 2002
- Genetic and Functional Analysis of a PmrA-PmrB-Regulated Locus Necessary for Lipopolysaccharide Modification, Antimicrobial Peptide Resistance, and Oral Virulence of Salmonella enterica Serovar TyphimuriumInfection and Immunity, 2000
- Mucoid conversion of Pseudomonas aeruginos by hydrogen peroxide: a mechanism for virulence activation in the cystic fibrosis lungMicrobiology, 1999
- Synthesis of the A‐band polysaccharide sugar D‐rhamnose requires Rmd and WbpW: identification of multiple AlgA homologues, WbpW and ORF488, in Pseudomonas aeruginosaMolecular Microbiology, 1998
- MICROBIAL BIOFILMSAnnual Review of Microbiology, 1995
- Characterization of a five‐cluster required for the biogenesis of type 4 fimbriae in Pseudomonas aeruginosaMolecular Microbiology, 1995
- Antibiotic Therapy for Chronic Infection of Pseudomonas in the LungAnnual Review of Medicine, 1993
- A Broad Host Range Mobilization System for In Vivo Genetic Engineering: Transposon Mutagenesis in Gram Negative BacteriaBio/Technology, 1983