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Published on: May 27, 2022
Sporulation environment drives phenotypic variation in the pathogen Aspergillus fumigatus
S Earl Kang1, Brandi N Celia1, Douda Bensasson2
1Fungal Biology Group & Plant Biology Department, University of Georgia, Athens, GA 30602, USA.
Abstract:
Aspergillus fumigatus causes more than 300,000 life-threatening infections annually and is widespread across varied environments with a single colony producing thousands of conidia, genetically identical dormant spores. Conidia are easily wind-dispersed to new environments where they can germinate and, if inhaled by susceptible hosts, cause disease. Using high-throughput single-cell analysis via flow cytometry we analyzed conidia produced and germinated in nine environmentally and medically relevant conditions (complete medium, minimal medium, high temperature, excess copper, excess iron, limited iron, excess salt, excess reactive oxygen species, and limited zinc). We found that germination phenotypes vary among genetically identical individuals, that the environment of spore production determines the size of spores and the degree of germination heterogeneity, and that the environment of spore production impacts virulence in a Galleria mellonella host.
Insights
Genetically identical Aspergillus fumigatus spores show varied germination and virulence. Spore production environment influences spore size, germination patterns, and host infection outcomes.
Area of Science:
- Medical Mycology
- Microbial Pathogenesis
- Environmental Microbiology
Background:
- Aspergillus fumigatus causes over 300,000 life-threatening infections annually.
- This fungus is widespread, producing numerous wind-dispersed conidia (dormant spores).
- Inhaled conidia can germinate in susceptible hosts, leading to disease.
Purpose of the Study:
- To investigate how environmental conditions during spore production affect Aspergillus fumigatus conidia.
- To analyze germination phenotypes and virulence of genetically identical conidia.
- To understand the impact of environmental factors on fungal spore heterogeneity.
Main Methods:
- High-throughput single-cell analysis using flow cytometry.
- Analysis of conidia produced and germinated under nine distinct environmental conditions.
- Assessment of virulence using a Galleria mellonella host model.
Main Results:
- Genetically identical Aspergillus fumigatus conidia exhibit variable germination phenotypes.
- The environment where spores are produced dictates their size and germination heterogeneity.
- Spore production environment significantly impacts fungal virulence in a host model.
Conclusions:
- Environmental conditions during spore production are critical determinants of Aspergillus fumigatus conidial traits.
- Spore production environment influences germination variability and subsequent host-pathogen interactions.
- Understanding these environmental impacts is key to managing Aspergillus fumigatus infections.
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