Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite, and environments fluctuate, so bacteria need strategies to survive when nutrients become scarce. In fact, many bacteria spend most of their time in such conditions of nutrient limitation, and hence they need to optimise gene regulation and protein biosynthesis during growth arrest. An optimal strategy in these conditions must mitigate the challenges and risks of making new proteins, while the cell is severely limited for energy and substrates. Recently, ribosome abundance and activity were measured in these conditions, revealing very low amounts of new protein synthesis, which is nevertheless vital for survival. The underlying mechanisms ar...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Heterotrophic Proteobacteria are versatile opportunists that have been extensively studied as model ...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
The growth rate should be a highly optimized process in bacteria since the battle for the conquest o...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Heterotrophic Proteobacteria are versatile opportunists that have been extensively studied as model ...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Heterotrophic Proteobacteria are versatile opportunists that have been extensively studied as model ...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
The growth rate should be a highly optimized process in bacteria since the battle for the conquest o...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Heterotrophic Proteobacteria are versatile opportunists that have been extensively studied as model ...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Bacteria in most natural environments spend substantial periods of time limited for essential nutrie...
Heterotrophic Proteobacteria are versatile opportunists that have been extensively studied as model ...