Microorganisms can restructure their transcriptional output to adapt to environmental conditions by sensing endogenous metabolite pools. In this paper, an Agilent customized microarray representing 4,106 genes was used to study temporal transcript profiles of Bacillus subtilis in response to valine, glutamate and glutamine pulses over 24 h. A total of 673, 835, and 1135 amino-acid-regulated genes were identified having significantly changed expression at one or more time points in response to valine, glutamate, and glutamine, respectively, including genes involved in cell wall, cellular import, metabolism of amino-acids and nucleotides, transcriptional regulation, flagellar motility, chemotaxis, phage proteins, sporulation, and many genes o...
Bacteria adapt to environmental stimuli by adjusting their transcriptomes in a complex manner, the f...
The lutR gene, encoding a product resembling a GntR-family transcriptional regulator, has previously...
Biofilms are structured communities of cells that are encased in a self-produced polymeric matrix an...
Microorganisms can restructure their transcriptional output to adapt to environmental conditions by ...
We have determined the time-resolved transcriptome of the model gram-positive organism B. subtilis d...
Many bacteria adapt their physiology and enter the viable but non-culturable state to survive prolon...
The development of commercial poly-γ-glutamic acid (γ-PGA) production by glutamate-dependent strains...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2004.Includes bibliographi...
The transcriptional regulatory network (TRN) of Bacillus subtilis coordinates cellular functions of ...
The adaptation of bacteria to the vigorous environmental changes they undergo is crucial to their su...
Complementing proteomic technologies enable an unbiased view of cellular adaptation and thus may pro...
The capacity of microorganisms to respond to variable external conditions requires a coordination of...
Bacteria encode a variety of ways to sense and respond to their dynamic environments. Consequently, ...
Bacteria adapt to environmental stimuli by adjusting their transcriptomes in a complex manner, the f...
Background: In global gene expression profiling experiments, variation in the expression of genes of...
Bacteria adapt to environmental stimuli by adjusting their transcriptomes in a complex manner, the f...
The lutR gene, encoding a product resembling a GntR-family transcriptional regulator, has previously...
Biofilms are structured communities of cells that are encased in a self-produced polymeric matrix an...
Microorganisms can restructure their transcriptional output to adapt to environmental conditions by ...
We have determined the time-resolved transcriptome of the model gram-positive organism B. subtilis d...
Many bacteria adapt their physiology and enter the viable but non-culturable state to survive prolon...
The development of commercial poly-γ-glutamic acid (γ-PGA) production by glutamate-dependent strains...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2004.Includes bibliographi...
The transcriptional regulatory network (TRN) of Bacillus subtilis coordinates cellular functions of ...
The adaptation of bacteria to the vigorous environmental changes they undergo is crucial to their su...
Complementing proteomic technologies enable an unbiased view of cellular adaptation and thus may pro...
The capacity of microorganisms to respond to variable external conditions requires a coordination of...
Bacteria encode a variety of ways to sense and respond to their dynamic environments. Consequently, ...
Bacteria adapt to environmental stimuli by adjusting their transcriptomes in a complex manner, the f...
Background: In global gene expression profiling experiments, variation in the expression of genes of...
Bacteria adapt to environmental stimuli by adjusting their transcriptomes in a complex manner, the f...
The lutR gene, encoding a product resembling a GntR-family transcriptional regulator, has previously...
Biofilms are structured communities of cells that are encased in a self-produced polymeric matrix an...