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Measurably evolving pathogens in the genomic era.


ABSTRACT: Current sequencing technologies have created unprecedented opportunities for studying microbial populations. For pathogens with comparatively low per-site mutation rates, such as DNA viruses and bacteria, whole-genome sequencing can reveal the accumulation of novel genetic variation between population samples taken at different times. The concept of 'measurably evolving populations' and related analytical approaches have provided powerful insights for fast-evolving RNA viruses, but their application to other pathogens is still in its infancy. We argue that previous distinctions between slow- and fast-evolving pathogens become blurred once evolution is assessed at a genome-wide scale, and we highlight important analytical challenges to be overcome to infer pathogen population dynamics from genomic data.

SUBMITTER: Biek R 

PROVIDER: S-EPMC4457702 | biostudies-literature | 2015 Jun

REPOSITORIES: biostudies-literature

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Measurably evolving pathogens in the genomic era.

Biek Roman R   Pybus Oliver G OG   Lloyd-Smith James O JO   Didelot Xavier X  

Trends in ecology & evolution 20150414 6


Current sequencing technologies have created unprecedented opportunities for studying microbial populations. For pathogens with comparatively low per-site mutation rates, such as DNA viruses and bacteria, whole-genome sequencing can reveal the accumulation of novel genetic variation between population samples taken at different times. The concept of 'measurably evolving populations' and related analytical approaches have provided powerful insights for fast-evolving RNA viruses, but their applica  ...[more]

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