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Updated: May 14, 2025

Monitoring Intraspecies Competition in a Bacterial Cell Population by Cocultivation of Fluorescently Labelled Strains
Published on: January 18, 2014
Within-host competition causes pathogen molecular evolution and perpetual microbiota dysbiosis
Emily J Stevens1,2, Jingdi D Li1, Tobias E Hector1
1Department of Biology, University of Oxford, Oxford, Oxfordshire, OX1 3SZ, United Kingdom.
Abstract:
Pathogens newly invading a host must compete with resident microbiota. This within-host microbial warfare could lead to more severe disease outcomes or constrain the evolution of virulence. By passaging a widespread pathogen (Staphylococcus aureus) and a natural microbiota community across populations of nematode hosts, we show that the pathogen displaced microbiota and reduced species richness, but maintained its virulence across generations. Conversely, pathogen populations and microbiota passaged in isolation caused more host harm relative to their respective no-host controls. For the evolved pathogens, this increase in virulence was partly mediated by enhanced biofilm formation and expression of the global virulence regulator agr. Whole genome sequencing revealed shifts in the mode of selection from directional (on pathogens evolving in isolation) to fluctuating (on pathogens evolving in host microbiota). This approach also revealed that competitive interactions with the microbiota drove early pathogen genomic diversification. Metagenome sequencing of the passaged microbiota shows that evolution in pathogen-infected hosts caused a significant reduction in community stability (dysbiosis), along with restrictions on the co-existence of some species based on nutrient competition. Our study reveals how microbial competition during novel infection could determine the patterns and processes of evolution with major consequences for host health.
Insights
Newly invading pathogens compete with host microbiota. This study shows pathogen competition impacts virulence evolution and host health, revealing microbial warfare
Area of Science:
- Microbial Ecology
- Evolutionary Biology
- Host-Pathogen Interactions
Background:
- Pathogen invasion involves competition with resident microbiota.
- Within-host microbial warfare can influence disease severity and pathogen evolution.
- Understanding these interactions is crucial for host health.
Purpose of the Study:
- To investigate the evolutionary consequences of pathogen-microbiota competition within a host.
- To examine how microbial warfare affects pathogen virulence and host harm.
- To explore the impact on microbial community stability and pathogen genomic diversification.
Main Methods:
- Passaging Staphylococcus aureus and a natural microbiota community across nematode hosts.
- Comparing evolved pathogens and microbiota in isolation versus co-culture within hosts.
- Utilizing whole genome sequencing and metagenome sequencing.
Main Results:
- Pathogens displaced microbiota, reducing species richness but maintaining virulence.
- Pathogens and microbiota evolved in isolation caused greater host harm.
- Microbial competition drove pathogen genomic diversification and altered selection modes.
- Pathogen infection led to microbiota dysbiosis and reduced community stability.
Conclusions:
- Microbial competition during novel infection shapes pathogen evolution and virulence.
- Interactions between pathogens and microbiota have significant consequences for host health.
- Dysbiosis results from pathogen-driven evolution within the host microbial community.
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