Correct decision making is fundamental for all living organisms to thrive under environmental changes. The patterns of environmental variation and the quality of available information define the most favourable strategy among multiple options, from randomly adopting a phenotypic state to sensing and reacting to environmental cues. Cellular memory—the ability to track and condition the time to switch to a different phenotypic state—can help withstand environmental fluctuations. How does memory manifest itself in unicellular organisms? We describe the population-wide consequences of phenotypic memory in microbes through a combination of deterministic modelling and stochastic simulations. Moving beyond binary switching models, our work highlig...
Bacteria in nature are “plagued“ by various unpredictable environmental stresses, being population d...
Cells maintain a stable size as they grow and divide. Inspired by the available experimental data, m...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specific nutri...
<div><p>Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specif...
Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specific nutri...
Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specific nutri...
AbstractPhase variation, or stochastic switching between alternative states of gene expression, is c...
Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specific nutri...
Phase variation, or stochastic switching between alternative states of gene expression, is common am...
Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounti...
AbstractPhase variation, or stochastic switching between alternative states of gene expression, is c...
The survival of organisms in randomly fluctuating environments not only depends on their ability to ...
The survival of organisms in randomly fluctuating environments not only depends on their ability to ...
Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounti...
Bacteria in nature are “plagued“ by various unpredictable environmental stresses, being population d...
Cells maintain a stable size as they grow and divide. Inspired by the available experimental data, m...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specific nutri...
<div><p>Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specif...
Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specific nutri...
Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specific nutri...
AbstractPhase variation, or stochastic switching between alternative states of gene expression, is c...
Bacteria prudently regulate their metabolic phenotypes by sensing the availability of specific nutri...
Phase variation, or stochastic switching between alternative states of gene expression, is common am...
Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounti...
AbstractPhase variation, or stochastic switching between alternative states of gene expression, is c...
The survival of organisms in randomly fluctuating environments not only depends on their ability to ...
The survival of organisms in randomly fluctuating environments not only depends on their ability to ...
Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounti...
Bacteria in nature are “plagued“ by various unpredictable environmental stresses, being population d...
Cells maintain a stable size as they grow and divide. Inspired by the available experimental data, m...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...