ArticlePLoS biology2025
The complex evolution and genomic dynamics of mating-type loci in Cryptococcus and Kwoniella.
Article in PLoS biology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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10 citing papers in PubMed.
- Article
- Dissecting the homeodomainmBio · 2026Article
- Establishment of a congenic strain for the oyster mushroom reveals the structure and evolution of mating-type loci.PLoS genetics · 2026Article
- Homeodomain protein Sxi1α independently controls cell-cell fusion and gene expression during sexual reproduction in Cryptococcus deneoformans.PLoS genetics · 2026Article
- Stress-responsive roles of thebioRxiv : the preprint server for biology · 2026Article
- Dissecting the homeodomainbioRxiv : the preprint server for biology · 2025Article
- Genomic and phenotypic insights into the expanding phylogenetic landscape of the Cryptococcus genus.PLoS genetics · 2025Article
- Genomic and phenotypic insights into the expanding phylogenetic landscape of thebioRxiv : the preprint server for biology · 2025Article
- Homeodomain protein Sxi1α independently controls cell-cell fusion and gene expression during sexual reproduction inbioRxiv : the preprint server for biology · 2025Article
- The Fungal Kingdom as a Rosetta Stone for biological discovery.Current biology : CB · 2025Article
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Abstract
Sexual reproduction in basidiomycete fungi is governed by MAT loci (P/R and HD), which exhibit remarkable evolutionary plasticity, characterized by expansions, rearrangements, and gene losses often associated with mating system transitions. The sister genera Cryptococcus and Kwoniella provide a powerful framework for studying MAT loci evolution owing to their diverse reproductive strategies and distinct architectures, spanning bipolar and tetrapolar systems with either linked or unlinked MAT loci. Building on recent comparative genomic analyses, we generated additional chromosome-level assemblies, uncovering distinct trajectories shaping MAT loci organization. Contrasting with the small-scale expansions and gene acquisitions observed in Kwoniella, our analyses revealed independent expansions of the P/R locus in tetrapolar Cryptococcus, possibly driven by pheromone gene duplications. Notably, these expansions coincided with a pronounced GC-content reduction best explained by reduced GC-biased gene conversion following recombination suppression, rather than relaxed codon usage selection. Diverse modes of MAT locus linkage were also identified, including three previously unrecognized transitions: one resulting in a pseudobipolar arrangement and two leading to bipolarity. All three transitions involved translocations. In the pseudobipolar configuration, the P/R and HD loci remained on the same chromosome but genetically unlinked, whereas the bipolar transitions additionally featured rearrangements that fused the two loci into a nonrecombining region. Mating assays confirmed a sexual cycle in Cryptococcus decagattii, demonstrating its ability to undergo mating and sporulation. Progeny analysis in Kwoniella mangrovensis revealed substantial ploidy variation and aneuploidy, likely stemming from haploid-diploid mating, yet evidence of recombination and loss of heterozygosity indicates that meiotic exchange occurs despite irregular chromosome segregation. Our findings underscore the importance of continued diversity sampling and provide further evidence for convergent evolution of fused MAT loci in basidiomycetes, offering new insights into the genetic and chromosomal changes driving reproductive transitions.
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