Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their genes to diversify by adapting to different environments. We asked whether the same genes that evolve rapidly in the long-term evolution experiment with Escherichia coli (LTEE) have also diversified extensively in nature. To make this comparison, we identified ~2000 core genes shared among 60 E. coli strains. During the LTEE, core genes accumulated significantly more nonsynonymous mutations than flexible (i.e., noncore) genes. Furthermore, core genes under positive selection in the LTEE are more conserved in nature than the average core gene. In some cases, adaptive mutations appear to modify protein functions, rather than merely knocking them o...
Understanding the extreme variation among bacterial genomes remains an unsolved challenge in evoluti...
Mutation is fundamental to evolution, because it generates the genetic variation on which selection ...
Adaptation by natural selection depends on the rates, effects and interactions of many mutations, ma...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Beneficial mutations fuel adaptation by altering phenotypes that enhance the fit of organisms to the...
Mutation is fundamental to evolution, because it generates the genetic variation on which selection ...
Beneficial mutations fuel adaptation by altering phenotypes that enhance the fit of organisms to the...
Beneficial mutations fuel adaptation by altering phenotypes that enhance the fit of organisms to the...
Mutation is fundamental to evolution, because it generates the genetic variation on which selection ...
Mutation is fundamental to evolution, because it generates the genetic variation on which selection ...
Understanding the extreme variation among bacterial genomes remains an unsolved challenge in evoluti...
Mutation is fundamental to evolution, because it generates the genetic variation on which selection ...
Adaptation by natural selection depends on the rates, effects and interactions of many mutations, ma...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Bacteria can evolve rapidly under positive selection owing to their vast numbers, allowing their gen...
Beneficial mutations fuel adaptation by altering phenotypes that enhance the fit of organisms to the...
Mutation is fundamental to evolution, because it generates the genetic variation on which selection ...
Beneficial mutations fuel adaptation by altering phenotypes that enhance the fit of organisms to the...
Beneficial mutations fuel adaptation by altering phenotypes that enhance the fit of organisms to the...
Mutation is fundamental to evolution, because it generates the genetic variation on which selection ...
Mutation is fundamental to evolution, because it generates the genetic variation on which selection ...
Understanding the extreme variation among bacterial genomes remains an unsolved challenge in evoluti...
Mutation is fundamental to evolution, because it generates the genetic variation on which selection ...
Adaptation by natural selection depends on the rates, effects and interactions of many mutations, ma...