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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.

2026-07-18 microbiology
10.64898/2026.07.17.739196 bioRxiv
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.

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