Phylogenetic and chemical studies in the potential psychotropic species complex of Psilocybe atrobrunnea with taxonomic and nomenclatural notes
Jan Borovička, Miroslav Obornı́k, J Strĭbrný, Machiel E. Noordeloos, Lourdes Sánchez, Milan Gryndler
Persoonia - Molecular Phylogeny and Evolution of Fungi November 26, 2014 DOI: 10.3767/003158515x685283 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Phylogenetic analysis Peer reviewed |
|---|---|
| Population | Five Psilocybe mushroom species |
| Topics | Psilocybin |
| Keywords | Phylogenetic tree Tryptamine Genus |
| Citations | 30 |
| Key points | Most investigated Psilocybe species belong to section Psilocybe, but P. laetissima was reclassified into Leratiomyces; psilocin and psilocybin were detected in P. medullosa for the first time, while P. atrobrunnea appears to have lost the ability to produce these alkaloids. |
Abstract
Five Psilocybe species with unresolved systematic position ( P. atrobrunnea , P. laetissima , P. medul- losa , P. pelliculosa , and P. silvatica ) were investigated using four molecular markers (EF1-α, ITS, LSU, and IGS). Phylogenetic analysis revealed that with the exception of P. laetissima , which is now rightfully classified in the genus Leratiomyces , all investigated species belong to Psilocybe sect. Psilocybe . For the first time, psychotropic compounds psilocin and psilocybin were detected in P. medullosa using gas chromatography-mass spectrometry. On the contrary, neither psilocin, nor psilocybin was detected in P. atrobrunnea and negative results were also obtained from mycelia grown in vitro on tryptamine/tryptophan-amended media. These results strongly suggest that biosynthesis of these alkaloids was lost in P. atrobrunnea . With the exception of minor differences detected in EF1-α marker, all sequences of American and European collections of P. atrobrunnea were identical. On the other hand, a thorough nomenclatural study revealed that the name P. atrobrunnea must be considered dubious; the oldest available candidate name, P. fuscofulva , was therefore adopted. The molecular data suggests that morphologically identical American P. silvatica and European P. medullosa likely represent distinct species; epitypes of both taxa were therefore designated.