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Updated: May 31, 2026

Detecting Cortex Fragments During Bacterial Spore Germination
Published on: June 25, 2016
A Single Amino Acid Substitution in CspA Increases Germination Sensitivity and Broadens Bile Salt Germinant
Isabel Roseiro1, Alexandra Nunes2,3,4, Diogo Martins1
1Instituto de Tecnologia Química e Biológica António Xavier, Oeiras, Portugal.
Abstract:
Once regarded primarily as a healthcare-associated pathogen, Clostridioides difficile has increasingly been reported as a cause of community-acquired infection, raising questions about the contribution of animal and environmental reservoirs to persistence and transmission. Ribotype 033 (RT033) is predominantly associated with animal and environmental reservoirs, yet key traits underlying its ecology are poorly defined. Here we show that RT033 strains produce spores with enhanced germination sensitivity and expanded germinant specificity, enabling germination at low concentrations of bile-salts and in response to bile-salts that are typically inhibitory, including those more typical of animal hosts. Genetic analysis identified a single amino acid substitution (R1036I) in CspA, a component of the CspBAC germination apparatus, as the determinant of this phenotype. Expression of the RT033 cspBAC operon in a laboratory strain was sufficient to confer increased sensitivity and expanded bile-salt responsiveness. The R1036I substitution disrupts a conserved salt bridge at the CspA:CspC interface while not causing major destabilisation of the complex in the absence or presence of germinants and co-germinants. Together, our findings reveal a naturally occurring rewiring of bile-salt sensing in spores of RT033 strains that likely reflects adaptation to animal-associated bile-acid environments and may influence persistence, transmission, and zoonotic potential of this lineage.
Insights
Clostridioides difficile Ribotype 033 (RT033) spores show enhanced germination, suggesting adaptation to animal environments. A specific mutation in CspA alters bile-salt sensing, potentially impacting disease transmission and zoonotic spread.
Area of Science:
- Microbiology
- Molecular Biology
- Ecology
Background:
- Clostridioides difficile is a significant pathogen, with increasing community-acquired infections.
- Ribotype 033 (RT033) strains are linked to animal and environmental reservoirs, but their ecology is unclear.
Purpose of the Study:
- To investigate the ecological traits of Clostridioides difficile RT033 strains.
- To understand the mechanisms behind enhanced spore germination in RT033.
Main Methods:
- Comparative analysis of RT033 spore germination.
- Genetic analysis to identify determinants of germination phenotype.
- Functional characterization of CspA mutations and the cspBAC operon.
Main Results:
- RT033 spores exhibit enhanced germination sensitivity and broader germinant specificity, including response to inhibitory bile salts.
- A single amino acid substitution (R1036I) in CspA was identified as the key determinant.
- Expression of the RT033 cspBAC operon conferred increased sensitivity and responsiveness in a laboratory strain.
Conclusions:
- A naturally occurring adaptation in bile-salt sensing in RT033 spores likely reflects adaptation to animal-associated environments.
- This rewiring may influence the persistence, transmission, and zoonotic potential of this C. difficile lineage.
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