Iron deprivation in bacteria causes the derepression of genes controlled by the ferric uptake regulator (Fur) The present microarray analysis of iron-starved Bacillus subtilis cells grown in minimal medium unveils additional physiological effects on a large number of genes linked to stringent-response regulation and to genes involved in amino acid biosynthesis associated with pathways essential for bacillibactin production.</p
Bacteria live in fluctuating environments, which they sense and respond to through gene regulation. ...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Keine Angaben.The Gram-positive bacterium Bacillus licheniformis is an important industrial host for...
Iron deprivation in bacteria causes the derepression of genes controlled by the ferric uptake regula...
Iron deprivation in bacteria causes the derepression of genes controlled by the ferric uptake regula...
The Bacillus subtilis ferric uptake regulator (Fur) protein is the major sensor of cellular iron sta...
Bacillus subtilis sporulation is a last-resort phenotypical adaptation in response to starvation. Th...
BACKGROUND: Iron acquisition systems are important virulence factors in pathogenic bacteria. To iden...
We have determined the time-resolved transcriptome of the model gram-positive organism B. subtilis d...
© 2015 Thode et al.; licensee BioMed Central. Background: Iron is an essential micronutrient for all...
Regulatory small RNAs play an essential role in maintaining cell homeostasis in bacteria in response...
Bacillus anthracis, the causative agent of anthrax, has to be able to adapt to different physical co...
Iron (Fe) is an important metal element for the growth of bacteria. Many bacteria respond to Fe limi...
Lack of available iron is one of many environmental challenges that a bacterium encounters during in...
Iron affects the physiology of bacteria in two different ways: as a micronutrient for bacterial grow...
Bacteria live in fluctuating environments, which they sense and respond to through gene regulation. ...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Keine Angaben.The Gram-positive bacterium Bacillus licheniformis is an important industrial host for...
Iron deprivation in bacteria causes the derepression of genes controlled by the ferric uptake regula...
Iron deprivation in bacteria causes the derepression of genes controlled by the ferric uptake regula...
The Bacillus subtilis ferric uptake regulator (Fur) protein is the major sensor of cellular iron sta...
Bacillus subtilis sporulation is a last-resort phenotypical adaptation in response to starvation. Th...
BACKGROUND: Iron acquisition systems are important virulence factors in pathogenic bacteria. To iden...
We have determined the time-resolved transcriptome of the model gram-positive organism B. subtilis d...
© 2015 Thode et al.; licensee BioMed Central. Background: Iron is an essential micronutrient for all...
Regulatory small RNAs play an essential role in maintaining cell homeostasis in bacteria in response...
Bacillus anthracis, the causative agent of anthrax, has to be able to adapt to different physical co...
Iron (Fe) is an important metal element for the growth of bacteria. Many bacteria respond to Fe limi...
Lack of available iron is one of many environmental challenges that a bacterium encounters during in...
Iron affects the physiology of bacteria in two different ways: as a micronutrient for bacterial grow...
Bacteria live in fluctuating environments, which they sense and respond to through gene regulation. ...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Keine Angaben.The Gram-positive bacterium Bacillus licheniformis is an important industrial host for...