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Mitogenome Variations in a Global Population of Aspergillus fumigatus
1Department of Biology, Institute of Infectious Diseases Research, McMaster University, Hamilton, ON L8S 4K1, Canada.
Abstract:
Aspergillus fumigatus is a ubiquitous, critical priority human fungal pathogen. Despite its clinical importance, there is limited knowledge regarding the variations of the genome within mitochondria, the powerhouse organelle within eukaryotic cells. In this study, we leveraged publicly available, raw, whole genome sequence data isolates from 1939 to investigate the variations in the mitochondrial genomes of A. fumigatus. These isolates were isolated from 22 countries on six continents, as well as from outer space and from within the International Space Station. In total, our analysis revealed 39 mitochondrial single nucleotide polymorphisms (mtSNPs) within this global sample, and, together, these 39 mtSNPs grouped the 1939 isolates into 79 mitochondrial multilocus genotypes (MLGs). Among the 79 MLGs, 39 were each distributed in at least two countries and 30 were each shared by at least two continents. The two most frequent MLGs were also broadly distributed: MLG11 represented 420 isolates from 11 countries and four continents and while MLG79 represented 418 isolates from 18 countries and five continents, consistent with long-distance dispersals of mitogenomes. Our population genetic analyses of the mtSNPs revealed limited differentiation among continental populations, but highly variable genetic differences among national populations, largely due to localized clonal expansions of different MLGs. Phylogenetic analysis and Discriminant Analysis of Principal Components of mtSNPs suggested the presence of at least three mitogenome clusters. Linkage disequilibrium, Index of Association, and phylogenetic incompatibility analyses collectively suggested evidence for mitogenome recombination in natural populations of A. fumigatus. In addition, sequence read depth analyses revealed an average ratio of ~20 mitogenomes per nuclear genome in this global population, but the ratios varied among strains within and between certain geographic populations. Together, our results suggest evidence for organelle dynamics, genetic differentiation, recombination, and both widespread and localized clonal expansion of the mitogenomes in the global A. fumigatus population.
Insights
This study analyzed mitochondrial genomes of Aspergillus fumigatus, revealing 39 mtSNPs and 79 MLGs. Findings suggest widespread dispersal, recombination, and clonal expansion in this fungal pathogen.
Area of Science:
- Mycology
- Genomics
- Population Genetics
Background:
- Aspergillus fumigatus is a critical human fungal pathogen with limited genomic variation data.
- Mitochondrial genomes are crucial for eukaryotic cell function but poorly understood in A. fumigatus.
Purpose of the Study:
- To investigate variations in the mitochondrial genomes of A. fumigatus using global isolates.
- To understand the population structure, dispersal, and evolutionary dynamics of A. fumigatus mitogenomes.
Main Methods:
- Analysis of publicly available whole genome sequence data from 1939 A. fumigatus isolates.
- Identification of mitochondrial single nucleotide polymorphisms (mtSNPs) and multilocus genotypes (MLGs).
- Population genetic, phylogenetic, and linkage disequilibrium analyses.
Main Results:
- 39 mtSNPs defined 79 distinct MLGs, with widespread distribution across continents and countries.
- Limited continental differentiation but high national variation due to clonal expansions.
- Evidence for mitogenome recombination and an average of ~20 mitogenomes per nuclear genome.
Conclusions:
- Global A. fumigatus populations exhibit significant mitogenome diversity and dynamics.
- Widespread dispersal, localized clonal expansion, and recombination shape mitogenome evolution.
- Organelle dynamics and genetic variation are key factors in A. fumigatus pathogenicity.
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