Studies of steady-state metabolic fluxes in Escherichia coli grown in nutrient-limited chemostat cultures suggest remarkable flux alterations in response to changes of growth-limiting nutrient in the medium (Hua et al., J. Bacteriol. 185:7053–7067, 2003). To elucidate the physiological adaptation of cells to the nutrient condition through the flux change and understand the molecular mechanisms underlying the change in the flux, information on gene expression is of great importance. DNA microarray analysis was performed to investigate the global transcriptional responses of steady-state cells grown in chemostat cultures with limited glucose or ammonia while other environmental conditions and the growth rate were kept constant. In slow-growin...
Microorganisms shape the composition of the medium they are growing in, which in turn has profound c...
Global gene expression was monitored in long-term stationary phase (LSP) cells of E. coli K12 MG1655...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
This study characterized the transcript profile of Escherichia coli in acetate cultures using DNA mi...
A time series of whole-genome transcription profiling of Escherichia coli K-12 W3110 was performed d...
<div><p>The facultative anaerobic bacterium <i>Escherichia coli</i> is frequently forced to adapt to...
Microorganisms shape the composition of the medium they are growing in, which in turn has profound c...
A key challenge for living systems is balancing utilization of multiple elemental nutrients, such as...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
To respond to fluctuating conditions, microbes typically need to synthesize novel proteins. As this ...
To respond to fluctuating conditions, microbes typically need to synthesize novel proteins. As this ...
Microorganisms shape the composition of the medium they are growing in, which in turn has profound c...
Microorganisms shape the composition of the medium they are growing in, which in turn has profound c...
Global gene expression was monitored in long-term stationary phase (LSP) cells of E. coli K12 MG1655...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
This study characterized the transcript profile of Escherichia coli in acetate cultures using DNA mi...
A time series of whole-genome transcription profiling of Escherichia coli K-12 W3110 was performed d...
<div><p>The facultative anaerobic bacterium <i>Escherichia coli</i> is frequently forced to adapt to...
Microorganisms shape the composition of the medium they are growing in, which in turn has profound c...
A key challenge for living systems is balancing utilization of multiple elemental nutrients, such as...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
To respond to fluctuating conditions, microbes typically need to synthesize novel proteins. As this ...
To respond to fluctuating conditions, microbes typically need to synthesize novel proteins. As this ...
Microorganisms shape the composition of the medium they are growing in, which in turn has profound c...
Microorganisms shape the composition of the medium they are growing in, which in turn has profound c...
Global gene expression was monitored in long-term stationary phase (LSP) cells of E. coli K12 MG1655...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...