Background: Microbial metabolism is highly dependent on the environmental conditions. Especially, the substrate concentration, as well as oxygen availability, determine the metabolic rates. In large-scale bioreactors, microorganisms encounter dynamic conditions in substrate and oxygen availability (mixing limitations), which influence their metabolism and subsequently their physiology. Earlier, single substrate pulse experiments were not able to explain the observed physiological changes generated under large-scale industrial fermentation conditions. Results: In this study we applied a repetitive feast-famine regime in an aerobic Escherichia coli culture in a time-scale of seconds. The regime was applied for several generations, allowing ce...
Despite mounting evidence that in clonal bacterial populations, phenotypic variability originates fr...
Growth and reproduction are essential requirements of living systems. Previous studies of bacterial ...
Bacteria in changing environments must constantly adapt to grow and survive. The adaptive response t...
Background: Microbial metabolism is highly dependent on the environmental conditions. Especially, th...
The rate of cell growth is crucial for bacterial fitness and drives the allocation of bacterial reso...
Microorganisms are constantly exposed to rapidly changing conditions, under natural as well as indus...
Microorganisms are constantly exposed to rapidly changing conditions, under natural as well as indus...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Microorganisms are constantly exposed to rapidly changing conditions, under natural as well as indus...
<div><p>Evolutionary adaptation to a constant environment is often accompanied by specialization and...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
Les bioréacteurs de grandes dimensions, en raison de phénomènes de transfert limitant, sont le siège...
How microbes dynamically coordinate uptake and simultaneous utilization of nutrients in complex nutr...
Despite mounting evidence that in clonal bacterial populations, phenotypic variability originates fr...
Growth and reproduction are essential requirements of living systems. Previous studies of bacterial ...
Bacteria in changing environments must constantly adapt to grow and survive. The adaptive response t...
Background: Microbial metabolism is highly dependent on the environmental conditions. Especially, th...
The rate of cell growth is crucial for bacterial fitness and drives the allocation of bacterial reso...
Microorganisms are constantly exposed to rapidly changing conditions, under natural as well as indus...
Microorganisms are constantly exposed to rapidly changing conditions, under natural as well as indus...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Microorganisms are constantly exposed to rapidly changing conditions, under natural as well as indus...
<div><p>Evolutionary adaptation to a constant environment is often accompanied by specialization and...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
Les bioréacteurs de grandes dimensions, en raison de phénomènes de transfert limitant, sont le siège...
How microbes dynamically coordinate uptake and simultaneous utilization of nutrients in complex nutr...
Despite mounting evidence that in clonal bacterial populations, phenotypic variability originates fr...
Growth and reproduction are essential requirements of living systems. Previous studies of bacterial ...
Bacteria in changing environments must constantly adapt to grow and survive. The adaptive response t...