Intracellular pH (pH(i)) critically affects bacterial cell physiology. Hence, a variety of food preservation strategies are aimed at perturbing pHi homeostasis. Unfortunately, accurate pHi quantification with existing methods is suboptimal, since measurements are averages across populations of cells, not taking into account interindividual heterogeneity. Yet, physiological heterogeneity in isogenic populations is well known to be responsible for differences in growth and division kinetics of cells in response to external stressors. To assess in this context the behavior of intracellular acidity, we have developed a robust method to quantify pHi at single-cell levels in Bacillus subtilis. Bacilli spoil food, cause disease, and are well known...
We show in this paper the results obtained when studying the behavior of hybridoma cells by monitori...
This is the final version. Available from the American Society for Microbiology via the DOI in this ...
International audienceMicroorganisms are able to adapt to different environments and evolve rapidly,...
Intracellular pH (pH(i)) critically affects bacterial cell physiology. Hence, a variety of food pres...
Intracellular pH (pHi) critically affects bacterial cell physiology. Hence, a variety of food preser...
The advent of 'omics' techniques bears significant potential for the assessment of the microbiologic...
Weak organic acids are commonly used food preservatives that protect food products from bacterial co...
The internal pH (pHi) of a living cell is one of its most important physiological parameters. To mon...
Within an isogenic microbial population in a homogenous environment, individual bacteria can still e...
The ability of Pseudomonas species to thrive in all major natural environments (i.e. terrestrial, fr...
Microorganisms are able to adapt to different environments and evolve rapidly, allowing them to cope...
Acid and base environmental stress responses were investigated in Bacillus subtilis. B. subtilis AG1...
Microorganisms are able to adapt to different environments and evolve rapidly, allowing them to cope...
The ability of lactic acid bacteria to regulate their cytoplasmic or intracellular pH is one of the ...
Heterogeneity in stress response of bacteria is one of the biggest challenges posed by minimal proce...
We show in this paper the results obtained when studying the behavior of hybridoma cells by monitori...
This is the final version. Available from the American Society for Microbiology via the DOI in this ...
International audienceMicroorganisms are able to adapt to different environments and evolve rapidly,...
Intracellular pH (pH(i)) critically affects bacterial cell physiology. Hence, a variety of food pres...
Intracellular pH (pHi) critically affects bacterial cell physiology. Hence, a variety of food preser...
The advent of 'omics' techniques bears significant potential for the assessment of the microbiologic...
Weak organic acids are commonly used food preservatives that protect food products from bacterial co...
The internal pH (pHi) of a living cell is one of its most important physiological parameters. To mon...
Within an isogenic microbial population in a homogenous environment, individual bacteria can still e...
The ability of Pseudomonas species to thrive in all major natural environments (i.e. terrestrial, fr...
Microorganisms are able to adapt to different environments and evolve rapidly, allowing them to cope...
Acid and base environmental stress responses were investigated in Bacillus subtilis. B. subtilis AG1...
Microorganisms are able to adapt to different environments and evolve rapidly, allowing them to cope...
The ability of lactic acid bacteria to regulate their cytoplasmic or intracellular pH is one of the ...
Heterogeneity in stress response of bacteria is one of the biggest challenges posed by minimal proce...
We show in this paper the results obtained when studying the behavior of hybridoma cells by monitori...
This is the final version. Available from the American Society for Microbiology via the DOI in this ...
International audienceMicroorganisms are able to adapt to different environments and evolve rapidly,...