Abstract Background In the post-genomic era, comprehension of cellular processes and systems requires global and non-targeted approaches to handle vast amounts of biological information. Results The present study predicts transcription units (TUs) in Bacillus subtilis, based on an integrated approach involving DNA sequence and transcriptome analyses. First, co-expressed gene clusters are predicted by calculating the Pearson correlation coefficients of adjacent genes for all the genes in a series that are transcribed in the same direction with no intervening gene transcribed in the opposite direction. Transcription factor (TF) binding sites are then predicted by detecting statistically significant TF binding sequences on the genome using a p...
Organisms from all domains of life use gene regulation networks to control cell growth, identity, fu...
As high-throughput technologies become cheaper and easier to use, raw sequence data and correspondin...
The transcriptional regulation of gene expression is orchestrated by complex networks of interacting...
Abstract Background Bacillus subtilis is one of the best-characterized organisms in Gram-positive ba...
Background Bacillus subtilis is one of the best-characterized organisms in Gram-positive bacteria. ...
The adaptation of bacteria to the vigorous environmental changes they undergo is crucial to their su...
The transcriptional regulatory network (TRN) of Bacillus subtilis coordinates cellular functions of ...
Background: Operon structures play an important role in transcriptional regulation in prokaryotes. H...
The majority of all genes have so far been identified and annotated systematically through in silico...
We introduce a manually constructed and curated regulatory network model that describes the current ...
Bacteria adapt to environmental stimuli by adjusting their transcriptomes in a complex manner, the f...
Bacteria adapt to environmental stimuli by adjusting their transcriptomes in a complex manner, the f...
As high-throughput technologies become cheaper and easier to use, raw sequence data and correspondin...
Abstract Background Operon structures play an important role in transcriptional regulation in prokar...
Using an oligonucleotide microarray, we searched for previously unrecognized transcription units in ...
Organisms from all domains of life use gene regulation networks to control cell growth, identity, fu...
As high-throughput technologies become cheaper and easier to use, raw sequence data and correspondin...
The transcriptional regulation of gene expression is orchestrated by complex networks of interacting...
Abstract Background Bacillus subtilis is one of the best-characterized organisms in Gram-positive ba...
Background Bacillus subtilis is one of the best-characterized organisms in Gram-positive bacteria. ...
The adaptation of bacteria to the vigorous environmental changes they undergo is crucial to their su...
The transcriptional regulatory network (TRN) of Bacillus subtilis coordinates cellular functions of ...
Background: Operon structures play an important role in transcriptional regulation in prokaryotes. H...
The majority of all genes have so far been identified and annotated systematically through in silico...
We introduce a manually constructed and curated regulatory network model that describes the current ...
Bacteria adapt to environmental stimuli by adjusting their transcriptomes in a complex manner, the f...
Bacteria adapt to environmental stimuli by adjusting their transcriptomes in a complex manner, the f...
As high-throughput technologies become cheaper and easier to use, raw sequence data and correspondin...
Abstract Background Operon structures play an important role in transcriptional regulation in prokar...
Using an oligonucleotide microarray, we searched for previously unrecognized transcription units in ...
Organisms from all domains of life use gene regulation networks to control cell growth, identity, fu...
As high-throughput technologies become cheaper and easier to use, raw sequence data and correspondin...
The transcriptional regulation of gene expression is orchestrated by complex networks of interacting...