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Genomic Evidence for a-α Heterothallic and α-α Unisexual Mating and Recombination in an Environmental Cryptococcus
Megan Hitchcock1, Veronica Thorn1, Himeshi Samarasinghe1
1Department of Biology, McMaster University, Hamilton, ON L8S 4K1, Canada.
Abstract:
Cryptococcus deneoformans is a human fungal pathogen capable of both a-α and α-α mating and sexual reproduction in laboratory settings. However, the extent of a-α and α-α sexual reproductions in natural populations remain unexplored. Here we analyzed the whole-genome sequences of 24 environmental strains of C. deneoformans from western Saudi Arabia, including one MAT a and 23 MATα isolates, with 15 MATα isolates belonging to multi-locus sequence type ST160 as defined by their combined DNA sequences at seven loci. To identify signatures for a-α and α-α reproduction, three samples were analyzed: total, MATα, and ST160. For each subpopulation, single nucleotide polymorphisms (SNPs) were identified for both the nuclear and mitochondrial genomes and subjected to four-gamete tests. In the total population and the MATα subpopulation, variable proportions of SNP pairs within as well as between the nuclear and the mitochondrial genomes showed evidence for recombination. Though no mitogenome SNPs were found among the 15 strains of ST160, the nuclear genome showed clear evidence for recombination, including among SNPs within the mating type region. In addition, the nuclear genome SNP pairs located further apart on the same chromosome showed a greater frequency of recombination in all three sample types. In contrast, mitogenome recombination breakpoints were mainly located in two genomic regions. Together, these results provide robust evidence for both a-α and α-α sexual reproduction within this environmental population of C. deneoformans.
Insights
This study provides robust evidence for both a-α and α-α sexual reproduction in environmental Cryptococcus deneoformans populations. Analysis of whole-genome sequences revealed recombination signatures, confirming natural sexual reproduction in this fungal pathogen.
Area of Science:
- Mycology
- Genetics
- Evolutionary Biology
Background:
- Cryptococcus deneoformans is a human fungal pathogen.
- Sexual reproduction in C. deneoformans is known in laboratory settings.
- The extent of sexual reproduction in natural populations is largely unexplored.
Purpose of the Study:
- To investigate the occurrence and extent of a-α and α-α sexual reproduction in environmental C. deneoformans populations.
- To analyze whole-genome sequences of environmental isolates to identify signatures of sexual reproduction.
- To compare findings from whole-genome SNP data with multilocus sequence typing.
Main Methods:
- Whole-genome sequencing of 24 environmental C. deneoformans strains from Saudi Arabia.
- Identification and analysis of single nucleotide polymorphisms (SNPs) in nuclear and mitochondrial genomes.
- Application of the four-gamete test to detect recombination signatures.
Main Results:
- Evidence of recombination was found in both nuclear and mitochondrial genomes across different subpopulations.
- The ST160 subpopulation showed nuclear genome recombination despite no mitogenome SNPs.
- Recombination frequency was correlated with SNP distance on chromosomes, indicating widespread genetic exchange.
Conclusions:
- Robust evidence supports both a-α and α-α sexual reproduction in environmental C. deneoformans populations.
- Sexual reproduction occurs in nature, contributing to genetic diversity in this fungal pathogen.
- Whole-genome SNP data offers a more comprehensive view of genetic diversity than multilocus sequence typing.
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