Skip to content
Review Open access

Virulence on the move: toxin plasmids drive diversity and disease in Clostridium perfringens

Sep 2026 · Microbiology Australia · 1 citation · 26 references

TL;DR

Advances in the understanding of toxin diversity and plasmid biology in C. perfringens are reviewed, highlighting the remarkable plasticity of its mobile genome and positioning C. perfringens as a compelling model to understand how mobile genetic elements drive virulence, adaptation and disease in bacterial pathogens.

Abstract

Clostridium perfringens is a Gram-positive anaerobe responsible for a wide spectrum of diseases in humans and animals, driven by an expanding arsenal of toxins. Notably, many of these virulence factors are encoded on mobile genetic elements, particularly conjugative plasmids, positioning mobile DNA at the centre of C. perfringens pathogenicity. Over the past decade, the pace of discovery has accelerated, with at least 11 new putative toxin-encoding genes identified, revealing an increasingly complex and dynamic toxin landscape. Here, we review advances in our understanding of toxin diversity and plasmid biology in C. perfringens, highlighting the remarkable plasticity of its mobile genome. We discuss how plasmid-encoded virulence, horizontal gene transfer and the emergence of novel plasmid families are reshaping current models of pathogenesis and evolution. We also consider key gaps in knowledge, including plasmid function, mobility and ecological context, and outline priorities for future genomic and functional studies. Together, these advances position C. perfringens as a compelling model to understand how mobile genetic elements drive virulence, adaptation and disease in bacterial pathogens.

Read PDF

Similar papers

Open access Sep 2026

Mobile genetic elements drive a plasmid fusion and deletion lifecycle shaping evolution and antimicrobial resistance

Plasmids are key drivers of bacterial adaptation, yet the mechanisms that generate their diversity remain poorly understood. Here, we show that mobile genetic elements (MGEs) orchestrate a fusion-deletion life cycle that repeatedly remodels plasmids in Staphylococcus aureus . Large-scale genomic analyses reveal t...

Thomas Ipoutcha, Yi-Qing Wang, Eduardo P. C. Rocha et al. · 0 citations
Open access Sep 2026

Cross-Serogroup Analysis of Representative Top-Seven Shiga toxin-producing Escherichia coli Plasmids Reveals Lineage-Specific Patterns

Plasmids play a significant role in shaping the pathogenic potential of Shiga toxin-producing Escherichia coli (STEC) by encoding virulence and adaptive genes that complement chromosomal determinants. While plasmid-encoded factors such as ehxA, espP, katP, and toxB are known to enhance intestinal colonization and host...

A. Nemati, Irvine Rivera, S. Mohammadi et al. · 0 citations
Review Nov 2026

From commensal to pathobiont: The emergence of virulence-enhanced Escherichia coli in China's food-animal systems - insights with future implications.

A fundamental shift in Escherichia coli epidemiology is being driven by convergence of virulence determinants and antimicrobial resistance within linked human-animal-environment systems. In China, the rapid growth of food-animal production, extensive antimicrobial use, and complex food networks are accelerating the eme...

Nishant Shah, Asim Munir, Muhammad Shafiq et al. · 0 citations
Open access Aug 2026

Advances in understanding of plasmid biology through the application of transposon insertion sequencing

Plasmids are extra-chromosomal DNA molecules capable of autonomous replication, stable inheritance in a bacterial population, and horizontal transfer to other bacteria. Plasmids can harbour auxiliary genetic material that contributes to host bacterial fitness, the most prominent example being antimicrobial resistance (...

Steven J. Hancock, M. Phan, Jie-Lian Zheng · 1 citation
Review Aug 2026

Clade-specific evolution and genome plasticity underlying antimicrobial resistance in Enterococcus faecium

The review highlights the importance of integrated genomic surveillance, novel therapy approaches and an enhanced antimicrobial stewardship program according to World Health Organization priorities in the global fight against MDR E. faecium.

Krishna Patel, Monica Chavan, J. Shah et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.