Host skin lipids trigger MAT-dependent mating, pathogenic hyphal growth, and parasexual reproduction of Malassezia furfur
Patriarca, E.; Tirtiaux, B.; David-Palma, M.; Averette, A.; Gushiken Ibanez, E.; Poumay, Y.; LeibundGut-Landmann, S.; Heitman, J.; Coelho, M. A.; Ianiri, G.
Show abstract
The lipophilic yeast genus Malassezia dominates the human skin mycobiome and, while typically commensal, is associated with skin disorders in which hyphal cells are frequently observed. However, the mechanisms underlying hyphal differentiation and its contribution to pathogenesis remain poorly understood. Here, we show that hyphal growth in Malassezia furfur requires a complete mating-type system and is promoted by noncanonical reproductive interactions. Interspecific mating generates stable diploid hybrids with evidence of recombination, whereas intraspecific mating produces cell-fusion products that undergo recombination and haploidization, consistent with a parasexual cycle. Functional analyses reveal that the pheromone/receptor (P/R) locus governs cell recognition and fusion, while the homeodomain (HD) locus is required for hyphal development despite having lost canonical mating-type determination. Leveraging in vitro and in vivo skin models, we show that hyphal cells invade the epidermis more efficiently and elicit stronger inflammatory responses than yeast cells. Together, these findings link parasexual-like reproduction, mating-type loci function, and morphogenesis in Malassezia to pathogenic interactions with the host.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A novel and conserved cell wall enzyme that can substitute for the Lipid II synthase MurG 96%
- Targeting methionine synthase in a fungal pathogen causes a metabolic imbalance that impacts cell energetics, growth and virulence 96%
- Giant transposons promote strain heterogeneity in a major fungal pathogen 95%
Similar papers in this journal
- Bacterial metabolites induce cell wall remodeling, antifungal resistance, and immune recognition of commensal fungi 96%
- A fungal transcription factor BOT6 facilitates the transition of a beneficial root fungus into an adapted anthracnose pathogen 96%
- Early diverging fungus Mucor circinelloides lacks centromeric histone CENP-A and displays a mosaic of point and regional centromeres 95%
Similar papers in this journal
- Horizontal gene transfer in the human and skin commensal Malassezia: a bacterially-derived flavohemoglobin is required for NO resistance and host interaction 96%
- Starships are active eukaryotic transposable elements mobilized by a new family of tyrosine recombinases 96%
- A yeast mating platform for multiplex screening of fungal GPCR-ligand interactions 96%
Similar papers in this journal
- Resolving the haplotypes of arbuscular mycorrhizal fungi highlights the role of two nuclear populations in host interactions 96%
- From iron to antibiotics: Identification of conserved bacterial-fungal interactions across diverse partners 96%
- Rampant transposition following RNAi loss causes hypermutation and antifungal drug resistance in clinical isolates of a human fungal pathogen 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.