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Carbon sources effects on conidiation in Penicillium camemberti: a transcriptomic analysis
Aymeric Paradis1, Christophe Lalanne2, Nicolas Hardy3
1Univ Paris Cité, Laboratoire Interdisciplinaire des Energies de Demain (LIED), 75013 Paris, France; International Flavors and Fragrances (IFF), Dangé-Saint-Romain, 86220, France.
Research in Microbiology
|September 20, 2025
Summary
The cheese fungus Penicillium camemberti
Area of Science:
- Mycology
- Fungal Biotechnology
- Industrial Microbiology
Background:
- The asexual reproduction of Penicillium camemberti, a filamentous fungus, is crucial for cheese ripening and industrial conidia production.
- Mycelium macromorphology's impact on conidia production during submerged fermentation is not well understood.
- Conidia are vital for inoculating fungi onto French soft cheeses and are produced industrially.
Purpose of the Study:
- To investigate the relationship between Penicillium camemberti mycelium morphology and conidia production under varying carbohydrate conditions.
- To analyze gene expression profiles during submerged fermentation to understand the conidiation pathway.
- To identify potential regulatory factors influencing conidia formation.
Main Methods:
- Laboratory-scale studies on the physiological effects of different carbohydrate sources and concentrations on fungal morphology and conidia production.
- RNA-sequencing (RNA-seq) transcriptomic analyses of P. camemberti during liquid cultures with varying glucose, sucrose, and fructose conditions.
- Comparative analysis of gene expression profiles to understand the conidiation pathway and identify regulatory elements.
Main Results:
- Different carbohydrate sources and concentrations induced distinct mycelial morphologies in P. camemberti, affecting conidia production efficiency.
- A dispersed morphology did not consistently correlate with higher conidia production.
- Transcriptomic analysis confirmed the involvement of the known conidiation pathway in P. camemberti and identified a potential conidiation-inhibiting transcription factor specific to Eurotiales.
Conclusions:
- Fungal morphology significantly influences conidia yield in P. camemberti submerged fermentation.
- A novel, potentially inhibitory transcription factor was identified, offering a new target for regulating asexual reproduction in fungi.
- Further functional studies in Aspergillus nidulans are needed to validate the role of the identified transcription factor in the asexual cycle.
Keywords:
Carbon sourcesConidiationMycelium morphologyPenicillium camembertiSubmerged fermentationTranscriptomicMore Related Videos
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