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Epidemiology, hypermutation, within-host evolution and the virulence of Neisseria meningitidis
Lauren Ancel Meyers1, Bruce R Levin, Anthony R Richardson
1Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, TX 78712-0253, USA. ancel@mail.utexas.edu
Abstract:
Many so-called pathogenic bacteria such as Neisseria meningitidis, Haemophilus influenzae, Staphylococcus aureus and Streptococcus pneumoniae are far more likely to colonize and maintain populations in healthy individuals asymptomatically than to cause disease. Disease is a dead-end for these bacteria: virulence shortens the window of time during which transmission to new hosts can occur and the subpopulations of bacteria actually responsible for disease, like those in the blood or cerebral spinal fluid, are rarely transmitted to new hosts. Hence, the virulence factors underlying their occasional pathogenicity must evolve in response to selection for something other than making their hosts sick. What are those selective pressures? We address this general question of the evolution of virulence in the context of phase shifting in N. meningitidis, a mutational process that turns specific genes on and off, and, in particular, contingency loci that code for virulence determinants such as pili, lipopolysaccharides, capsular polysaccharides and outer membrane proteins. We use mathematical models of the epidemiology and the within-host infection dynamics of N. meningitidis to make the case that rapid phase shifting evolves as an adaptation for colonization of diverse hosts and that the virulence of this bacterium is an inadvertent consequence of short-sighted within-host evolution, which is exasperated by the increased mutation rates associated with phase shifting. We present evidence for and suggest experimental and retrospective tests of these hypotheses.
Insights
Many bacteria asymptomatically colonize hosts, as disease hinders transmission. For Neisseria meningitidis, rapid gene phase shifting likely evolves for host colonization, with virulence being an unintended outcome.
Area of Science:
- Microbiology
- Evolutionary Biology
- Epidemiology
Background:
- Many bacteria, including Neisseria meningitidis, commonly colonize healthy individuals asymptomatically.
- Disease states are evolutionarily disadvantageous for bacteria, limiting transmission opportunities.
- Bacterial virulence factors must therefore evolve under selective pressures unrelated to host sickness.
Purpose of the Study:
- To investigate the evolutionary pressures driving virulence in bacteria.
- To examine the role of phase shifting in Neisseria meningitidis colonization and virulence.
- To determine if rapid phase shifting is an adaptation for colonizing diverse hosts.
Main Methods:
- Utilized mathematical modeling to simulate N. meningitidis epidemiology.
- Analyzed within-host infection dynamics.
- Focused on contingency loci regulating virulence factors like pili and outer membrane proteins.
Main Results:
- Rapid phase shifting in N. meningitidis appears to be an adaptation for colonizing diverse hosts.
- Bacterial virulence is proposed as an unintended consequence of short-sighted within-host evolution.
- Increased mutation rates associated with phase shifting exacerbate virulence.
Conclusions:
- The evolution of virulence in N. meningitidis is linked to adaptations for colonization.
- Phase shifting facilitates adaptation to diverse host environments.
- Virulence is a byproduct of within-host evolutionary dynamics, not a direct adaptive strategy.