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Updated: Jul 8, 2025

Time-Lapse Epifluorescence Microscopy Imaging of Pseudomonas aeruginosa and Staphylococcus aureus Heterogeneous Phenotypes
Published on: February 14, 2025
Pseudomonas aeruginosa kills Staphylococcus aureus in a polyphosphate-dependent manner
Ritika Shah1, Olivia Jankiewicz1, Colton Johnson1
1School of Biological Sciences, Illinois State University, Microbiology, Normal, IL, USA.
Abstract:
Due to their frequent coexistence in many polymicrobial infections, including in patients with burn or chronic wounds or cystic fibrosis, recent studies have started to investigate the mechanistic details of the interaction between the opportunistic pathogens Pseudomonas aeruginosa and Staphylococcus aureus. P. aeruginosa rapidly outcompetes S. aureus under in vitro co-cultivation conditions, which is mediated by several of P. aeruginosa's virulence factors. Here, we report that polyphosphate (polyP), an efficient stress defense system and virulence factor in P. aeruginosa, plays a role for the pathogen's ability to inhibit and kill S. aureus in a contact-independent manner. We show that P. aeruginosa cells characterized by low polyP level are less detrimental to S. aureus growth and survival while the gram-positive pathogen is significantly more compromised by the presence of P. aeruginosa cells that produce high level of polyP. We show that the polyP-dependent phenotype could be a direct effect by the biopolymer, as polyP is present in the spent media and causes significant damage to the S. aureus cell envelope. However, more likely is that polyP's effects are indirect through the regulation of one of P. aeruginosa's virulence factors, pyocyanin. We show that pyocyanin production in P. aeruginosa occurs polyP-dependent and harms S. aureus through membrane damage and the generation of reactive oxygen species, resulting in increased expression of antioxidant enzymes. In summary, our study adds a new component to the list of biomolecules that the gram-negative pathogen P. aeruginosa generates to compete with S. aureus for resources.
Insights
Polyphosphate (polyP) produced by Pseudomonas aeruginosa inhibits Staphylococcus aureus growth. High polyP levels in P. aeruginosa damage S. aureus cell envelopes, potentially via pyocyanin, aiding P. aeruginosa competition in polymicrobial infections.
Area of Science:
- Microbiology
- Pathogen Interaction
- Biochemistry
Background:
- Pseudomonas aeruginosa and Staphylococcus aureus frequently co-occur in polymicrobial infections, such as chronic wounds and cystic fibrosis.
- P. aeruginosa typically outcompetes S. aureus in vitro, mediated by its virulence factors.
- Understanding the molecular mechanisms of this interaction is crucial for treating polymicrobial infections.
Approach:
- Investigated the role of polyphosphate (polyP), a P. aeruginosa virulence factor, in inhibiting S. aureus.
- Compared the effects of P. aeruginosa with varying polyP levels on S. aureus growth and survival.
- Assessed the direct impact of polyP and its indirect effects via pyocyanin on S. aureus.
Key Points:
- P. aeruginosa with high polyP levels significantly inhibit S. aureus growth and survival.
- PolyP can directly damage the S. aureus cell envelope or indirectly through pyocyanin.
- Pyocyanin production in P. aeruginosa is polyP-dependent and causes S. aureus membrane damage and oxidative stress.
Conclusions:
- Polyphosphate is a key factor enabling P. aeruginosa to inhibit and kill S. aureus.
- This polyP-mediated inhibition, likely via pyocyanin, contributes to P. aeruginosa's competitive advantage.
- The study identifies polyP as a significant biomolecule in P. aeruginosa's competitive strategies against S. aureus.
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