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Published on: August 12, 2019
The Genomic Aftermath of Hybridization in the Opportunistic Pathogen Candida metapsilosis
Leszek P Pryszcz1, Tibor Németh2, Ester Saus1
1Bioinformatics and Genomics Programme, Centre for Genomic Regulation (CRG), Barcelona, Spain; Universitat Pompeu Fabra (UPF), Barcelona, Spain.
Abstract:
Candida metapsilosis is a rarely-isolated, opportunistic pathogen that belongs to a clade of pathogenic yeasts known as the C. parapsilosis sensu lato species complex. To gain insight into the recent evolution of C. metapsilosis and the genetic basis of its virulence, we sequenced the genome of 11 clinical isolates from various locations, which we compared to each other and to the available genomes of the two remaining members of the complex: C. orthopsilosis and C. parapsilosis. Unexpectedly, we found compelling genomic evidence that C. metapsilosis is a highly heterozygous hybrid species, with all sequenced clinical strains resulting from the same past hybridization event involving two parental lineages that were approximately 4.5% divergent in sequence. This result indicates that the parental species are non-pathogenic, but that hybridization between them formed a new opportunistic pathogen, C. metapsilosis, that has achieved a worldwide distribution. We show that these hybrids are diploid and we identified strains carrying loci for both alternative mating types, which supports mating as the initial mechanism for hybrid formation. We trace the aftermath of this hybridization at the genomic level, and reconstruct the evolutionary relationships among the different strains. Recombination and introgression -resulting in loss of heterozygosis- between the two subgenomes have been rampant, and includes the partial overwriting of the MTLa mating locus in all strains. Collectively, our results shed light on the recent genomic evolution within the C. parapsilosis sensu lato complex, and argue for a re-definition of species within this clade, with at least five distinct homozygous lineages, some of which having the ability to form hybrids.
Insights
Candida metapsilosis, a rare pathogen, is a hybrid species formed from two non-pathogenic lineages. Genomic analysis reveals its recent evolution and worldwide spread as an opportunistic pathogen.
Area of Science:
- Medical Mycology
- Evolutionary Genomics
- Yeast Genetics
Background:
- Candida metapsilosis is an opportunistic pathogen within the Candida parapsilosis sensu lato species complex.
- Understanding its evolutionary history and virulence factors is crucial for clinical management.
Purpose of the Study:
- To investigate the recent evolution and genetic basis of virulence in Candida metapsilosis.
- To compare genomic data of C. metapsilosis with related species C. orthopsilosis and C. parapsilosis.
Main Methods:
- Whole-genome sequencing of 11 clinical isolates of C. metapsilosis.
- Comparative genomic analysis against existing genomes of C. orthopsilosis and C. parapsilosis.
Main Results:
- Genomic evidence indicates C. metapsilosis is a highly heterozygous hybrid species, originating from a single hybridization event between two divergent parental lineages.
- All sequenced strains are diploid, with some possessing both mating type loci, suggesting mating as the origin of hybridization.
- Extensive recombination and introgression between subgenomes have occurred post-hybridization, including alterations to mating loci.
Conclusions:
- Hybridization between non-pathogenic lineages created the opportunistic pathogen C. metapsilosis, which has achieved global distribution.
- The findings suggest a re-definition of species within the C. parapsilosis sensu lato complex, recognizing distinct homozygous lineages and hybridizing capabilities.
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