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      Genome evolution and adaptation in a long-term experiment with Escherichia coli.

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          Abstract

          The relationship between rates of genomic evolution and organismal adaptation remains uncertain, despite considerable interest. The feasibility of obtaining genome sequences from experimentally evolving populations offers the opportunity to investigate this relationship with new precision. Here we sequence genomes sampled through 40,000 generations from a laboratory population of Escherichia coli. Although adaptation decelerated sharply, genomic evolution was nearly constant for 20,000 generations. Such clock-like regularity is usually viewed as the signature of neutral evolution, but several lines of evidence indicate that almost all of these mutations were beneficial. This same population later evolved an elevated mutation rate and accumulated hundreds of additional mutations dominated by a neutral signature. Thus, the coupling between genomic and adaptive evolution is complex and can be counterintuitive even in a constant environment. In particular, beneficial substitutions were surprisingly uniform over time, whereas neutral substitutions were highly variable.

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          Author and article information

          Journal
          Nature
          Nature
          Springer Science and Business Media LLC
          1476-4687
          0028-0836
          Oct 29 2009
          : 461
          : 7268
          Affiliations
          [1 ] Department of Microbiology and Molecular Genetics, Michigan State University, East Lansing, Michigan 48824, USA.
          Article
          nature08480
          10.1038/nature08480
          19838166
          75b02ba8-37fb-46fe-aaca-d8cd7b6ff5b3
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