[[abstract]]Because all the cell populations are capable of making switches between different genetic expression states in response to the environmental change, Thattai and van Oudenaarden (Genetics 167, 523–530, 2004) have raised a very interesting question: In a constantly fluctuating environment, which type of cell population (heterogeneous or homogeneous) is fitter in the long term? This problem is very important to development and evolution biology. We thus take an extensive analysis about how the cell population evolves in a periodically switching environment either with symmetrical time-span or asymmetrical time-span. A complete picture of the phase diagrams for both cases is obtained. Furthermore, we find that the systems with time-...
International audienceWe study the long time behavior of a parabolic Lotka-Volterra type equation co...
The survival of organisms in randomly fluctuating environments not only depends on their ability to ...
Organisms are known to adapt to regularly varying environments. However, in most cases, the fluctuat...
Gene expression is a stochastic biological processes that controls the different phenotypes of an or...
A simple family of models of a bacterial population in a time vary-ing environment in which cells ca...
An enduring puzzle in evolutionary biology is to understand how individuals and populations adapt to...
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,...
Cell populations can benefit from changing phenotype when the environment changes. One mechanism for...
Neo-Darwinian evolution has presented a paradigm for population dynamics built on random mutations a...
Living species, ranging from bacteria to animals, exist in environmental conditions that exhibit spa...
A fundamental question in evolutionary biology is what promotes genetic variation at non-neutral loc...
A fundamental question in evolutionary biology is what promotes genetic variation at non-neutral loc...
A fundamental question in evolutionary biology is what promotes genetic variation at non-neutral loc...
International audienceWe study the long time behavior of a parabolic Lotka-Volterra type equation co...
International audienceWe study the long time behavior of a parabolic Lotka-Volterra type equation co...
The survival of organisms in randomly fluctuating environments not only depends on their ability to ...
Organisms are known to adapt to regularly varying environments. However, in most cases, the fluctuat...
Gene expression is a stochastic biological processes that controls the different phenotypes of an or...
A simple family of models of a bacterial population in a time vary-ing environment in which cells ca...
An enduring puzzle in evolutionary biology is to understand how individuals and populations adapt to...
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,...
Cell populations can benefit from changing phenotype when the environment changes. One mechanism for...
Neo-Darwinian evolution has presented a paradigm for population dynamics built on random mutations a...
Living species, ranging from bacteria to animals, exist in environmental conditions that exhibit spa...
A fundamental question in evolutionary biology is what promotes genetic variation at non-neutral loc...
A fundamental question in evolutionary biology is what promotes genetic variation at non-neutral loc...
A fundamental question in evolutionary biology is what promotes genetic variation at non-neutral loc...
International audienceWe study the long time behavior of a parabolic Lotka-Volterra type equation co...
International audienceWe study the long time behavior of a parabolic Lotka-Volterra type equation co...
The survival of organisms in randomly fluctuating environments not only depends on their ability to ...
Organisms are known to adapt to regularly varying environments. However, in most cases, the fluctuat...