Mutation rate dynamics reflect ecological change in an emerging zoonotic pathogen

Author:

Murray Gemma G. R.ORCID,Balmer Andrew J.ORCID,Herbert JosephineORCID,Hadjirin Nazreen F.,Kemp Caroline L.ORCID,Matuszewska MartaORCID,Bruchmann SebastianORCID,Hossain A. S. Md. MukarramORCID,Gottschalk MarceloORCID,Tucker Alexander W.ORCID,Miller EricORCID,Weinert Lucy A.ORCID

Abstract

Mutation rates vary both within and between bacterial species, and understanding what drives this variation is essential for understanding the evolutionary dynamics of bacterial populations. In this study, we investigate two factors that are predicted to influence the mutation rate: ecology and genome size. We conducted mutation accumulation experiments on eight strains of the emerging zoonotic pathogen Streptococcus suis. Natural variation within this species allows us to compare tonsil carriage and invasive disease isolates, from both more and less pathogenic populations, with a wide range of genome sizes. We find that invasive disease isolates have repeatedly evolved mutation rates that are higher than those of closely related carriage isolates, regardless of variation in genome size. Independent of this variation in overall rate, we also observe a stronger bias towards G/C to A/T mutations in isolates from more pathogenic populations, whose genomes tend to be smaller and more AT-rich. Our results suggest that ecology is a stronger correlate of mutation rate than genome size over these timescales, and that transitions to invasive disease are consistently accompanied by rapid increases in mutation rate. These results shed light on the impact that ecology can have on the adaptive potential of bacterial pathogens.

Funder

Isaac Newton Trust

Wellcome Trust

Newnham College, University of Cambridge

Biotechnology and Biological Sciences Research Council

Medical Research Council

Raymond and Beverly Sackler Foundation

Horizon 2020

Publisher

Public Library of Science (PLoS)

Subject

Cancer Research,Genetics (clinical),Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference56 articles.

1. Genetic drift, selection and the evolution of the mutation rate;M Lynch;Nat Rev Genet,2016

2. Evolution of mutation rates in bacteria;E Denamur;Mol Microbiol,2006

3. The rise and fall of mutator bacteria;A Giraud;Curr Opin Microbiol,2001

4. Within-host evolution of bacterial pathogens;X Didelot;Nat Rev Microbiol,2016

5. Understanding the emergence of bacterial pathogens in novel hosts.;C Bonneaud;Philos Trans R So B Biol Sci,2019

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