Abstract
Pseudomonas aeruginosa is an opportunistic bacterial pathogen associated with many types of chronic infection. At sites of chronic infection, such as the airways of people with cystic fibrosis (CF), P. aeruginosa forms biofilm-like aggregates. These are clusters of bacterial cells encased in a polymer-rich matrix that shields bacteria from environmental stresses and antibiotic treatment. When P. aeruginosa forms a biofilm, large amounts of filamentous Pf bacteriophage (phage) are produced. Unlike most phage that typically lyse and kill their bacterial hosts, filamentous phage of the genus Inovirus, which includes Pf phage, often do not, and instead are continuously extruded from the bacteria. Here, we discuss the implications of the accumulation of filamentous Pf phage in the biofilm matrix, where they interact with matrix polymers to organize the biofilm into a highly ordered liquid crystal. This structural configuration promotes bacterial adhesion, desiccation survival, and antibiotic tolerance – all features typically associated with biofilms. We propose that Pf phage make structural contributions to P. aeruginosa biofilms and that this constitutes a novel form of symbiosis between bacteria and bacteriophage.
Highlights
Filamentous bacteriophage in P. aeruginosa biofilms When P. aeruginosa forms a biofilm, Pf phages are produced in abundance
We propose that Pf phage make structural contributions to P. aeruginosa biofilms and that this constitutes a novel form of symbiosis between bacteria and bacteriophage
Birefringence is a direct measurement of molecular order. Using this technique in conjunction with studies that included Pf phage deficient and replete P. aeruginosa strains, we found that Pf phage were both necessary and sufficient to assemble P. aeruginosa biofilms into birefringent liquid crystals (Figure 2)
Summary
Filamentous bacteriophage in P. aeruginosa biofilms When P. aeruginosa forms a biofilm, Pf phages are produced in abundance. Biofilm assembly becomes crystal clear – filamentous bacteriophage organize the Pseudomonas aeruginosa biofilm matrix into a liquid crystal When P. aeruginosa forms a biofilm, large amounts of filamentous Pf bacteriophage (phage) are produced.
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