Related Experiment Video
Updated: Dec 30, 2025

Enrichment and Detection of Clostridium perfringens Toxinotypes in Retail Food Samples
Published on: October 18, 2019
Changes in the expression of genes encoding type IV pili-associated proteins are seen when Clostridium perfringens is
Samantha R Soncini1,2, Andrea H Hartman1, Tara M Gallagher1,3
1Department of Biological Sciences, Virginia Tech, Blacksburg, VA, 24061, USA.
Background:
Clostridium perfringens is a Gram-positive anaerobic pathogen that causes multiple diseases in humans and animals. C. perfringens lack flagella but have type IV pili (TFP) and can glide on agar surfaces. When C. perfringens bacteria are placed on surfaces, they become elongated, flexible and have TFP on their surface, traits not seen in liquid-grown cells. In addition, the main pilin in C. perfringens TFP, PilA2, undergoes differential post-translational modification when grown in liquid or on plates. To understand the mechanisms underlying these phenotypes, bacteria were grown in three types of liquid media and on agar plates with the same medium to compare gene expression using RNA-Seq.
Results:
Hundreds of genes were differentially expressed, including transcriptional regulatory protein-encoding genes and genes associated with TFP functions, which were higher on plates than in liquid. Transcript levels of TFP genes reflected the proportion of each protein predicted to reside in a TFP assembly complex. To measure differences in rates of translation, the Escherichia coli reporter gene gusA gene (encoding β-glucuronidase) was inserted into the chromosome downstream of TFP promoters and in-frame with the first gene of the operon. β-glucuronidase expression was then measured in cells grown in liquid or on plates. β-glucuronidase activity was proportional to mRNA levels in liquid-grown cells, but not plate-grown cells, suggesting significant levels of post-transcriptional regulation of these TFP-associated genes occurs when cells are grown on surfaces.
Conclusions:
This study reveals insights into how a non-flagellated pathogenic rod-shaped bacterium senses and responds to growth on surfaces, including inducing transcriptional regulators and activating multiple post-transcriptional regulatory mechanisms associated with TFP functions.
Insights
Clostridium perfringens surface growth triggers changes in gene expression and protein regulation. This study reveals how the pathogen senses surfaces, impacting its type IV pili (TFP) functions and overall behavior.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Molecular Biology
Background:
- Clostridium perfringens is a Gram-positive anaerobic pathogen.
- It lacks flagella but possesses type IV pili (TFP) enabling surface gliding.
- Surface-grown cells exhibit distinct morphology and pilin modifications compared to liquid-grown cells.
Purpose of the Study:
- To investigate the molecular mechanisms behind C. perfringens' surface-dependent phenotypes.
- To compare gene expression profiles between liquid and surface-grown bacteria.
- To understand the regulation of type IV pili (TFP) assembly and function on surfaces.
Main Methods:
- Culturing C. perfringens in diverse liquid media and on agar plates.
- Utilizing RNA-Seq to compare global gene expression.
- Employing a reporter gene assay (gusA) to assess translational regulation of TFP genes.
Main Results:
- Hundreds of genes, including transcriptional regulators and TFP-related genes, showed differential expression between surface and liquid growth.
- Transcript levels of TFP genes correlated with predicted protein proportions in the assembly complex.
- Post-transcriptional regulation significantly impacts TFP gene expression on surfaces, unlike in liquid cultures.
Conclusions:
- C. perfringens senses and adapts to surface growth through transcriptional regulators.
- The bacterium employs significant post-transcriptional regulatory mechanisms for TFP functions on surfaces.
- This adaptation is crucial for the pathogen's behavior and potential virulence in different environments.
More Related Videos
Related Concept Videos
Gene Regulation During Sporulation
Stringent Response in E. coli
Gene Regulation in Microbial Communities: Quorum Sensing
Fimbriae, Pili, and Axial Filaments

