Genetically identical individuals in bacterial populations can display significant phenotypic variability. This variability can be functional, for example by allowing a fraction of stress prepared cells to survive an otherwise lethal stress. The optimal fraction of stress prepared cells depends on environmental conditions. However, how bacterial populations modulate their level of phenotypic variability remains unclear. Here we show that the alternative sigma factor σV circuit in Bacillus subtilis generates functional phenotypic variability that can be tuned by stress level, environmental history and genetic perturbations. Using single-cell time-lapse microscopy and microfluidics, we find the fraction of cells that immediately activate σV u...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Bacteria typically proliferate by binary fission to form genetically identical and morphologically i...
Bacteria use a variety of systems to sense stress and mount an appropriate response to assure fitnes...
Funder: FP7 Ideas: European Research Council (FP7 Ideas); Id: http://dx.doi.org/10.13039/100011199; ...
Genetically identical individuals in bacterial populations can display significant phenotypic variab...
Genetically identical individuals in bacterial populations can display significant phenotypic variab...
<div><p>Bacteria suffer various stresses in their unpredictable environment. In response, clonal pop...
Despite the central role of alternative sigma factors in bacterial stress response and virulence the...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
Gene expression can be noisy, as can the growth of single cells. Such cell-to-cell variation has bee...
Genetically identical bacterial cells commonly display different phenotypes. This phenotypic heterog...
Gene regulatory circuits can use dynamic, and even stochastic, strategies to respond to environmenta...
Escherichia coli uses sigma factors to quickly control large gene cohorts during stress conditions. ...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
Bacterial populations frequently encounter potentially lethal environmental stress factors. Growing ...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Bacteria typically proliferate by binary fission to form genetically identical and morphologically i...
Bacteria use a variety of systems to sense stress and mount an appropriate response to assure fitnes...
Funder: FP7 Ideas: European Research Council (FP7 Ideas); Id: http://dx.doi.org/10.13039/100011199; ...
Genetically identical individuals in bacterial populations can display significant phenotypic variab...
Genetically identical individuals in bacterial populations can display significant phenotypic variab...
<div><p>Bacteria suffer various stresses in their unpredictable environment. In response, clonal pop...
Despite the central role of alternative sigma factors in bacterial stress response and virulence the...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
Gene expression can be noisy, as can the growth of single cells. Such cell-to-cell variation has bee...
Genetically identical bacterial cells commonly display different phenotypes. This phenotypic heterog...
Gene regulatory circuits can use dynamic, and even stochastic, strategies to respond to environmenta...
Escherichia coli uses sigma factors to quickly control large gene cohorts during stress conditions. ...
To survive in rapidly changing environmental conditions, bacteria have evolved a diverse set of regu...
Bacterial populations frequently encounter potentially lethal environmental stress factors. Growing ...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Bacteria typically proliferate by binary fission to form genetically identical and morphologically i...
Bacteria use a variety of systems to sense stress and mount an appropriate response to assure fitnes...