Cells must make reliable decisions under fluctuating extracellular conditions, but also be flexible enough to adapt to such changes. How cells reconcile these seemingly contradictory requirements through the dynamics of cellular decision-making is poorly understood. To study this issue we quantitatively measured gene expression and protein localization in single cells of the model organism Bacillus subtilis during the progression to spore formation. We found that sporulation proceeded through noisy and reversible steps towards an irreversible, all-or-none commitment point. Specifically, we observed cell-autonomous and spontaneous bursts of gene expression and transient protein localization events during sporulation. Based on these measureme...
Some bacteria, such as Bacillus subtilis, withstand starvation by forming dormant spores that revive...
SummaryWe investigated developmental commitment during sporulation in Bacillus subtilis. Sporulation...
A model system for investigating how developmental regulatory networks determine cell fate is spore ...
Cells must make reliable decisions under fluctuating extracellular conditions, but also be flexible ...
These authors contributed equally to this work. Genetically identical cells sharing an environment c...
<div><p>Traditionally microorganisms were considered to be autonomous organisms that could be studie...
Traditionally microorganisms were considered to be autonomous organisms that could be studied in iso...
AbstractStarved Bacillus subtilis cells monitor environmental conditions and intracellular events be...
Environmental signals induce diverse cellular differentiation programs. In certain systems, cells de...
Multipotent differentiation, where cells adopt one of several possible fates, occurs in diverse syst...
Environmental signals induce diverse cellular differentiation programs. In certain systems, cells de...
Bacteria often encounter stress conditions, where cells need to address conflicting demands. For ins...
SummaryMicroorganisms can facilitate their survival in stressful environments by entering a state of...
Multipotent differentiation, where cells adopt one of several possible fates, occurs in diverse syst...
To cope with sudden changes in their environment, bacteria can use a bet-hedging strategy by dividin...
Some bacteria, such as Bacillus subtilis, withstand starvation by forming dormant spores that revive...
SummaryWe investigated developmental commitment during sporulation in Bacillus subtilis. Sporulation...
A model system for investigating how developmental regulatory networks determine cell fate is spore ...
Cells must make reliable decisions under fluctuating extracellular conditions, but also be flexible ...
These authors contributed equally to this work. Genetically identical cells sharing an environment c...
<div><p>Traditionally microorganisms were considered to be autonomous organisms that could be studie...
Traditionally microorganisms were considered to be autonomous organisms that could be studied in iso...
AbstractStarved Bacillus subtilis cells monitor environmental conditions and intracellular events be...
Environmental signals induce diverse cellular differentiation programs. In certain systems, cells de...
Multipotent differentiation, where cells adopt one of several possible fates, occurs in diverse syst...
Environmental signals induce diverse cellular differentiation programs. In certain systems, cells de...
Bacteria often encounter stress conditions, where cells need to address conflicting demands. For ins...
SummaryMicroorganisms can facilitate their survival in stressful environments by entering a state of...
Multipotent differentiation, where cells adopt one of several possible fates, occurs in diverse syst...
To cope with sudden changes in their environment, bacteria can use a bet-hedging strategy by dividin...
Some bacteria, such as Bacillus subtilis, withstand starvation by forming dormant spores that revive...
SummaryWe investigated developmental commitment during sporulation in Bacillus subtilis. Sporulation...
A model system for investigating how developmental regulatory networks determine cell fate is spore ...