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November 14, 2013Science656 citations

Long-Term Dynamics of Adaptation in Asexual Populations

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MWMichael J. WiserNRNoah RibeckRLRichard E. Lenski

Key Points

  • The study aims to understand the long-term dynamics of fitness in asexual populations, focusing on E. coli.
  • Analyzed fitness trajectories of 12 E. coli populations over 50,000 generations.
  • Incorporated clonal interference and diminishing-returns epistasis into a theoretical dynamical model.
  • Used genomic tools to measure fitness changes.
  • Mean fitness increased consistently, following a power law relationship.
  • Fitness trajectories indicate limitless growth potential over long time scales.
  • Theoretical model aligns with empirical observations of fitness dynamics.

Abstract

Experimental studies of evolution have increased greatly in number in recent years, stimulated by the growing power of genomic tools. However, organismal fitness remains the ultimate metric for interpreting these experiments, and the dynamics of fitness remain poorly understood over long time scales. Here, we examine fitness trajectories for 12 Escherichia coli populations during 50,000 generations. Mean fitness appears to increase without bound, consistent with a power law. We also derive this power-law relation theoretically by incorporating clonal interference and diminishing-returns epistasis into a dynamical model of changes in mean fitness over time.

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Cite This Study

Wiser et al. (2013) studied this question.

synapsesocial.com/papers/69d7345bc74376700bf309b9https://doi.org/10.1126/science.1243357
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