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Optimizing in vitro spherulation cues in the fungal pathogen Coccidioides
Abstract:
Coccidioides spp . are part of a group of thermally dimorphic fungal pathogens, which grow as filamentous cells (hyphae) in the soil and transform to a different morphology upon inhalation into the host. The Coccidioides host form, the spherule, is unique and highly under characterized due to both technical and biocontainment challenges. Each spherule arises from an environmental spore (arthroconidium), matures, and develops hundreds of internal endospores, which are released from the spherule upon rupture. Each endospore can then go on to form another spherule in a cycle called spherulation. One of the foremost technical challenges has been reliably growing spherules in culture without the formation of contaminating hyphae, and consistently inducing endospore release from spherules. Here, we present optimization of in vitro spherule growth and endospore release, by closely controlling starting cell density in the culture, using freshly-harvested arthroconidia, and decreasing the concentration of multiple salts in spherulation media. We developed a minimal media to test spherule growth on various carbon and nitrogen sources. We defined a critical role for the dispersant Tamol in both early spherule formation and prevention of the accumulation of a visible film around spherules. Finally, we examined how the conditions under which arthroconidia are generated influence their transcriptome and subsequent development into spherules, demonstrating that this is an important variable to control when designing spherulation experiments. Together, our data reveal multiple strategies to optimize in vitro spherulation growth, enabling characterization of this virulence-relevant morphology.
Insights
Optimizing Coccidioides spherule growth in vitro is crucial for studying this fungal pathogen. This research details methods to improve spherule culture and endospore release, aiding virulence factor research.
Area of Science:
- Medical Mycology
- Fungal Pathogenesis
- Molecular Biology
Background:
- Coccidioides spp. are thermally dimorphic fungi causing coccidioidomycosis.
- The spherule is the unique, understudied host-adapted form of Coccidioides.
- Challenges in culturing spherules hinder research into Coccidioides virulence.
Purpose of the Study:
- To optimize in vitro culture conditions for Coccidioides spherule growth.
- To improve the consistent release of endospores from spherules.
- To enable better characterization of the Coccidioides spherule morphology.
Main Methods:
- Controlled optimization of cell density, arthroconidia freshness, and salt concentrations in media.
- Development of a minimal media to test carbon and nitrogen sources for spherule growth.
- Investigated the role of Tamol as a dispersant and its effect on spherule formation.
- Analyzed the influence of arthroconidia generation conditions on spherule development.
Main Results:
- Established reliable methods for in vitro spherule growth and endospore release.
- Identified critical factors including cell density, media composition, and dispersants.
- Demonstrated that arthroconidia generation conditions significantly impact spherule development.
- Highlighted the role of Tamol in promoting spherule formation and preventing film accumulation.
Conclusions:
- Optimized in vitro spherulation protocols facilitate the study of Coccidioides virulence.
- Controlled arthroconidia generation and specific media components are key for reproducible spherule cultures.
- These advancements enable deeper investigation into the Coccidioides spherule, a critical virulence factor.

