As high-throughput technologies become cheaper and easier to use, raw sequence data and corresponding annotations for many organisms are becoming available. However, sequence data alone is not sufficient to explain the biological behaviour of organisms, which arises largely from complex molecular interactions. There is a need to develop new platform technologies that can be applied to the investigation of whole-genome datasets in an efficient and cost-effective manner. One such approach is the transfer of existing knowledge from well-studied organisms to closely-related organisms. In this paper, we describe a system, BacillusRegNet, for the use of a model organism, Bacillus subtilis, to infer genome-wide regulatory networks in less well-stu...
Multiple efforts have been made to comprehend the regulatory machinery of model prokaryotic organism...
Baumbach J, Tauch A, Rahmann S. Towards the integrated analysis, visualization and reconstruction of...
Baumbach J. CoryneRegNet 4.0: a reference database for corynebacterial gene regulatory networks. BMC...
As high-throughput technologies become cheaper and easier to use, raw sequence data and correspondin...
As high-throughput technologies become cheaper and easier to use, raw sequence data and correspondin...
We introduce a manually constructed and curated regulatory network model that describes the current ...
Organisms from all domains of life use gene regulation networks to control cell growth, identity, fu...
The adaptation of bacteria to the vigorous environmental changes they undergo is crucial to their su...
The reconstruction of genome-scale metabolic models from genome annotations has become a routine pra...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
BackgroundGenome-scale prediction of gene regulation and reconstruction of transcriptional regulator...
Baumbach J, Rahmann S, Tauch A. Reliable transfer of transcriptional gene regulatory networks betwee...
Identification and reconstruction of various transcriptional regulons in bacteria using a computatio...
Background: Genome-scale prediction of gene regulation and reconstruction of transcriptional regulat...
Abstract Background In the post-genomic era, comprehension of cellular processes and systems require...
Multiple efforts have been made to comprehend the regulatory machinery of model prokaryotic organism...
Baumbach J, Tauch A, Rahmann S. Towards the integrated analysis, visualization and reconstruction of...
Baumbach J. CoryneRegNet 4.0: a reference database for corynebacterial gene regulatory networks. BMC...
As high-throughput technologies become cheaper and easier to use, raw sequence data and correspondin...
As high-throughput technologies become cheaper and easier to use, raw sequence data and correspondin...
We introduce a manually constructed and curated regulatory network model that describes the current ...
Organisms from all domains of life use gene regulation networks to control cell growth, identity, fu...
The adaptation of bacteria to the vigorous environmental changes they undergo is crucial to their su...
The reconstruction of genome-scale metabolic models from genome annotations has become a routine pra...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
BackgroundGenome-scale prediction of gene regulation and reconstruction of transcriptional regulator...
Baumbach J, Rahmann S, Tauch A. Reliable transfer of transcriptional gene regulatory networks betwee...
Identification and reconstruction of various transcriptional regulons in bacteria using a computatio...
Background: Genome-scale prediction of gene regulation and reconstruction of transcriptional regulat...
Abstract Background In the post-genomic era, comprehension of cellular processes and systems require...
Multiple efforts have been made to comprehend the regulatory machinery of model prokaryotic organism...
Baumbach J, Tauch A, Rahmann S. Towards the integrated analysis, visualization and reconstruction of...
Baumbach J. CoryneRegNet 4.0: a reference database for corynebacterial gene regulatory networks. BMC...