Related Experiment Video
Updated: Jun 9, 2026

Discovering CsgD Regulatory Targets in Salmonella Biofilm Using Chromatin Immunoprecipitation and High-Throughput Sequencing (ChIP-seq)
Published on: January 18, 2020
A transcription unit based systems biology study on Salmonella typhimurium gene organization, evolution,
Leting Sun1, Zhixuan Deng1, Junya Zhang1
1Youth Innovation Team of Medical Bioinformatics, Shenzhen University Medical School, Shenzhen, China.
Abstract:
A bacterial transcription unit (TU) could be composed of a single gene or multiple adjacent genes forming an operon. Traditional systems biology often relies on gene-centric analysis, overlooking the regulatory complexity inherent in the operon structure, that is, containing transcriptional regulatory elements shared by multiple genes within a unique operon. Here, by integrating genome annotation with large-scale transcriptomic profiling data, we systematically identified operons from five representative Salmonella typhimurium strains, followed by comparative TU analyses among the strains. The core TUs are conserved among strains and govern essential metabolic functions. In contrast, the non-core pan TUs exhibit higher regulatory plasticity, driving environmental adaptation and strain-specific biological processes. Comparative TU analysis also reveals three main variation patterns of the pan-operon families across the strains, among which, alternative organization of operons with the same set of genes among strains happens frequently. We further decomposed the TUs into co-expression network modules and delineated the regulatory network for each module. Notably, we identified two modules, CEN9 and CEN5, which are enriched with genes of Salmonella Pathogenicity Island 1 (SPI-1) and SPI-2 type III secretion systems and the substrates, and therefore potentially related with bacterial virulence and systemic infection, respectively. In summary, the study proposed a new transcriptome data based TU-detecting strategy, based on which we identified the TUs in S. typhimurium, observed their evolutionary patterns, and comprehensively elucidated their organization and regulation.
More Related Videos
Related Concept Videos
Coordination of Gene Expression Processes in Bacteria
Evolution of Microbial Genome
Global Regulatory Systems
Transcriptional Regulation: Riboswitches
Regulation of Bacterial Virulence
Translational Regulation

