Variation of mutation rate at a particular site in a particular genotype, in other words mutation rate plasticity (MRP), can be caused by stress or ageing. However, mutation rate control by other factors is less well characterized. Here we show that in wild-type Escherichia coli (K-12 and B strains), the mutation rate to rifampicin resistance is plastic and inversely related to population density: lowering density can increase mutation rates at least threefold. This MRP is genetically switchable, dependent on the quorum-sensing gene luxS--specifically its role in the activated methyl cycle--and is socially mediated via cell-cell interactions. Although we identify an inverse association of mutation rate with fitness under some circumstances,...
The mutation rate and mutations' effects on fitness are crucial to evolution. Mutation rates are und...
Mutator strains are expected to evolve when the availability and effect of beneficial mutations are ...
Mutations are the heritable changes in DNA which make evolution possible. Natural selection acts on ...
Variation of mutation rate at a particular site in a particular genotype, in other words mutation ra...
Variation of mutation rate at a particular site in a particular genotype, in other words mutation ra...
Evolution depends on mutations. For an individual genotype, the rate at which mutations arise is kno...
We do not need to rehearse the grim story of the global rise of antibiotic resistant microbes. But w...
Rates of random, spontaneous mutation can vary plastically, dependent upon the environment. Such pla...
Rates of random, spontaneous mutation can vary plastically, dependent upon the environment. Such pla...
Several bacterial systems show behavior interpreted as evidence for stress-induced mutagenesis (adap...
Organisms live in constantly changing environments in which, the nature, severity and frequency of t...
International audienceThrough their life cycles, bacteria experience many different environments in ...
The rate at which mutations are generated is central to the pace of evolution. Although this rate is...
While specific mutations allow organisms to adapt to stressful environments, most changes in an orga...
The mutation rate and mutations’ effects on fitness are crucial to evolution. Mutation rates are und...
The mutation rate and mutations' effects on fitness are crucial to evolution. Mutation rates are und...
Mutator strains are expected to evolve when the availability and effect of beneficial mutations are ...
Mutations are the heritable changes in DNA which make evolution possible. Natural selection acts on ...
Variation of mutation rate at a particular site in a particular genotype, in other words mutation ra...
Variation of mutation rate at a particular site in a particular genotype, in other words mutation ra...
Evolution depends on mutations. For an individual genotype, the rate at which mutations arise is kno...
We do not need to rehearse the grim story of the global rise of antibiotic resistant microbes. But w...
Rates of random, spontaneous mutation can vary plastically, dependent upon the environment. Such pla...
Rates of random, spontaneous mutation can vary plastically, dependent upon the environment. Such pla...
Several bacterial systems show behavior interpreted as evidence for stress-induced mutagenesis (adap...
Organisms live in constantly changing environments in which, the nature, severity and frequency of t...
International audienceThrough their life cycles, bacteria experience many different environments in ...
The rate at which mutations are generated is central to the pace of evolution. Although this rate is...
While specific mutations allow organisms to adapt to stressful environments, most changes in an orga...
The mutation rate and mutations’ effects on fitness are crucial to evolution. Mutation rates are und...
The mutation rate and mutations' effects on fitness are crucial to evolution. Mutation rates are und...
Mutator strains are expected to evolve when the availability and effect of beneficial mutations are ...
Mutations are the heritable changes in DNA which make evolution possible. Natural selection acts on ...