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Published on: December 7, 2021
Genome Sequences Reveal Cryptic Speciation in the Human Pathogen Histoplasma capsulatum
Victoria E Sepúlveda1, Roberto Márquez2, David A Turissini3
1Department of Microbiology and Immunology, School of Medicine, University of North Carolina, Chapel Hill, North Carolina, USA.
Abstract:
Histoplasma capsulatum is a pathogenic fungus that causes life-threatening lung infections. About 500,000 people are exposed to H. capsulatum each year in the United States, and over 60% of the U.S. population has been exposed to the fungus at some point in their life. We performed genome-wide population genetics and phylogenetic analyses with 30 Histoplasma isolates representing four recognized areas where histoplasmosis is endemic and show that the Histoplasma genus is composed of at least four species that are genetically isolated and rarely interbreed. Therefore, we propose a taxonomic rearrangement of the genus.IMPORTANCE The evolutionary processes that give rise to new pathogen lineages are critical to our understanding of how they adapt to new environments and how frequently they exchange genes with each other. The fungal pathogen Histoplasma capsulatum provides opportunities to precisely test hypotheses about the origin of new genetic variation. We find that H. capsulatum is composed of at least four different cryptic species that differ genetically and also in virulence. These results have implications for the epidemiology of histoplasmosis because not all Histoplasma species are equivalent in their geographic range and ability to cause disease.
Insights
Histoplasma capsulatum, a fungus causing lung infections, is revealed to be at least four distinct cryptic species. These species differ genetically and in virulence, impacting histoplasmosis epidemiology.
Area of Science:
- Mycology
- Genetics
- Pathogen Evolution
Background:
- Histoplasma capsulatum causes life-threatening lung infections.
- Over 500,000 people in the U.S. are exposed annually, with over 60% of the population exposed lifetime.
- Understanding pathogen evolution is crucial for disease management.
Purpose of the Study:
- To investigate the population genetics and phylogenetic relationships within the Histoplasma genus.
- To determine if H. capsulatum represents a single species or multiple distinct lineages.
- To propose a taxonomic rearrangement based on genetic divergence.
Main Methods:
- Genome-wide population genetics analyses.
- Phylogenetic analyses using 30 Histoplasma isolates.
- Comparison of genetic divergence and virulence across lineages.
Main Results:
- The Histoplasma genus comprises at least four genetically isolated species.
- These species rarely interbreed, indicating distinct evolutionary trajectories.
- Cryptic species exhibit differences in genetic makeup and virulence.
Conclusions:
- A taxonomic rearrangement of the Histoplasma genus is proposed.
- The findings have significant implications for understanding histoplasmosis epidemiology.
- Different Histoplasma species vary in geographic distribution and disease-causing potential.
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