Copyright © 2008 Nature Publishing GroupNoisy bistable dynamics in gene regulation can underlie stochastic switching and is demonstrated to be beneficial under fluctuating environments. It is not known, however, if fluctuating selection alone can result in bistable dynamics. Using a stochastic model of simple feedback networks, we apply fluctuating selection on gene expression and run in silico evolutionary simulations. We find that independent of the specific nature of the environment-fitness relationship, the main outcome of fluctuating selection is the evolution of increased evolvability in the network; system parameters evolve toward a nonlinear regime where phenotypic diversity is increased and small changes in genotype cause large cha...
The dynamical structure of genetic networks determines the occurrence of various biological mechanis...
In the evolutionary process, the random transmission and mutation of genes provide biological divers...
SummaryBackgroundBistability in genetic networks allows cells to remember past events and to make di...
Noisy bistable dynamics in gene regulation can underlie stochastic switching and is demonstrated to ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
AbstractAlternative cell fates represent a form of non-genetic diversity, which can promote adaptati...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
AbstractGene regulatory networks are multistable dynamical systems in which attractor states represe...
Bistability arises within a wide range of biological systems from the A phage switch in bacteria to ...
Alternative cell fates represent a form of non-genetic diversity, which can promote adaptation and f...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Gene regulatory networks (GRNs) are complex systems in which many genes regulate mutually to adapt t...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Gene expression is a stochastic biological processes that controls the different phenotypes of an or...
The dynamical structure of genetic networks determines the occurrence of various biological mechanis...
The dynamical structure of genetic networks determines the occurrence of various biological mechanis...
In the evolutionary process, the random transmission and mutation of genes provide biological divers...
SummaryBackgroundBistability in genetic networks allows cells to remember past events and to make di...
Noisy bistable dynamics in gene regulation can underlie stochastic switching and is demonstrated to ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
AbstractAlternative cell fates represent a form of non-genetic diversity, which can promote adaptati...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
AbstractGene regulatory networks are multistable dynamical systems in which attractor states represe...
Bistability arises within a wide range of biological systems from the A phage switch in bacteria to ...
Alternative cell fates represent a form of non-genetic diversity, which can promote adaptation and f...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Gene regulatory networks (GRNs) are complex systems in which many genes regulate mutually to adapt t...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Gene expression is a stochastic biological processes that controls the different phenotypes of an or...
The dynamical structure of genetic networks determines the occurrence of various biological mechanis...
The dynamical structure of genetic networks determines the occurrence of various biological mechanis...
In the evolutionary process, the random transmission and mutation of genes provide biological divers...
SummaryBackgroundBistability in genetic networks allows cells to remember past events and to make di...