Cell populations can benefit from changing phenotype when the environment changes. One mechanism for generating these changes is stochastic phenotype switching, whereby cells switch stochastically from one phenotype to another according to genetically determined rates, irrespective of the current environment, with the matching of phenotype to environment then determined by selective pressure. This mechanism has been observed in numerous contexts, but identifying the precise connection between switching rates and environmental changes remains an open problem. Here, we introduce a simple model to study the evolution of phenotype switching in a finite population subject to random environmental shocks. We compare the successes of competing geno...
Phase variation, or stochastic switching between alternative states of gene expression, is common am...
AbstractPhase variation, or stochastic switching between alternative states of gene expression, is c...
Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and commo...
Uncertain environments pose a tremendous challenge to populations: The selective pressures imposed b...
Gene expression is a stochastic biological processes that controls the different phenotypes of an or...
Organisms are known to adapt to regularly varying environments. However, in most cases, the fluctuat...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Organisms are known to adapt to regularly varying environments. However, in most cases, the fluctuat...
Although the existence of multiple stable phenotypes of living organisms enables random switching be...
Genetic spaces are often described in terms of fitness landscapes or genotype-to-phenotype maps, whe...
Genetic spaces are often described in terms of fitness landscapes or genotype-to-phenotype maps, whe...
Although the existence of multiple stable phenotypes of living organisms enables random switching be...
Although the existence of multiple stable phenotypes of living organisms enables random switching be...
Stochastic switching is an example of phenotypic bet hedging, where an individual can switch between...
Phase variation, or stochastic switching between alternative states of gene expression, is common am...
AbstractPhase variation, or stochastic switching between alternative states of gene expression, is c...
Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and commo...
Uncertain environments pose a tremendous challenge to populations: The selective pressures imposed b...
Gene expression is a stochastic biological processes that controls the different phenotypes of an or...
Organisms are known to adapt to regularly varying environments. However, in most cases, the fluctuat...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Organisms are known to adapt to regularly varying environments. However, in most cases, the fluctuat...
Although the existence of multiple stable phenotypes of living organisms enables random switching be...
Genetic spaces are often described in terms of fitness landscapes or genotype-to-phenotype maps, whe...
Genetic spaces are often described in terms of fitness landscapes or genotype-to-phenotype maps, whe...
Although the existence of multiple stable phenotypes of living organisms enables random switching be...
Although the existence of multiple stable phenotypes of living organisms enables random switching be...
Stochastic switching is an example of phenotypic bet hedging, where an individual can switch between...
Phase variation, or stochastic switching between alternative states of gene expression, is common am...
AbstractPhase variation, or stochastic switching between alternative states of gene expression, is c...
Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and commo...