Nutrient scarcity is a common condition in nature, but the resulting extremely low growth rates (below 0.025 h(-1) ) are an unexplored research area in Bacillus subtilis. To understand microbial life in natural environments, studying the adaptation of B. subtilis to near-zero growth conditions is relevant. To this end, a chemostat modified for culturing an asporogenous B. subtilis sigF mutant strain at extremely low growth rates (also named a retentostat) was set up, and biomass accumulation, culture viability, metabolite production and cell morphology were analysed. During retentostat culturing, the specific growth rate decreased to a minimum of 0.00006 h(-1) , corresponding to a doubling time of 470 days. The energy distribution between g...
The physiology of filamentous fungi at growth rates approaching zero has been subject to limited stu...
Bacillus subtilis sporulation is a last-resort phenotypical adaptation in response to starvation. Th...
Lactococcus lactis is an important lactic acid bacteria (LAB) species that is used for the manufactu...
Nutrient scarcity is a common condition in nature, but the resulting extremely low growth rates (bel...
Nutrient scarcity is a common condition in nature, but the resulting extremely low growth rates (bel...
Bacillus subtilis is an important soil-dwelling bacteria species that is used for the production of ...
Bacillus subtilis is an important soil-dwelling bacteria species that is used for the production of ...
The current knowledge of the physiology and gene expression of industrially relevant microorganisms ...
<p>The current knowledge of the physiology and gene expression of industrially relevant microorganis...
The soil bacterium Bacillus subtilis frequently encounters a reduction in temperature in its natural...
Bacteria can become dormant or form spores when they are starved for nutrients. Here, we find that n...
Situations of extremely low substrate availability, resulting in slow growth, are common in natural ...
Situations of extremely low substrate availability, resulting in slow growth, are common in natural ...
<p>For long-term growth measurements, the cells were grown in LB medium (A). Effect of MM medium and...
The physiology of filamentous fungi at growth rates approaching zero has been subject to limited stu...
Bacillus subtilis sporulation is a last-resort phenotypical adaptation in response to starvation. Th...
Lactococcus lactis is an important lactic acid bacteria (LAB) species that is used for the manufactu...
Nutrient scarcity is a common condition in nature, but the resulting extremely low growth rates (bel...
Nutrient scarcity is a common condition in nature, but the resulting extremely low growth rates (bel...
Bacillus subtilis is an important soil-dwelling bacteria species that is used for the production of ...
Bacillus subtilis is an important soil-dwelling bacteria species that is used for the production of ...
The current knowledge of the physiology and gene expression of industrially relevant microorganisms ...
<p>The current knowledge of the physiology and gene expression of industrially relevant microorganis...
The soil bacterium Bacillus subtilis frequently encounters a reduction in temperature in its natural...
Bacteria can become dormant or form spores when they are starved for nutrients. Here, we find that n...
Situations of extremely low substrate availability, resulting in slow growth, are common in natural ...
Situations of extremely low substrate availability, resulting in slow growth, are common in natural ...
<p>For long-term growth measurements, the cells were grown in LB medium (A). Effect of MM medium and...
The physiology of filamentous fungi at growth rates approaching zero has been subject to limited stu...
Bacillus subtilis sporulation is a last-resort phenotypical adaptation in response to starvation. Th...
Lactococcus lactis is an important lactic acid bacteria (LAB) species that is used for the manufactu...