Phylogenomics of the psychoactive mushroom genusPsilocybeand evolution of the psilocybin biosynthetic gene cluster

灵霉素 克莱德 生物 系统发育学 进化生物学 系统基因组学 基因 基因簇 遗传学 动物 致幻剂 药理学
作者
Alexander J Bradshaw,Virginia Ramírez-Cruz,Ali R. Awan,Giuliana Furci,Laura Guzmán‐Dávalos,Paul Stamets,Bryn T. M. Dentinger
标识
DOI:10.1101/2022.12.13.520147
摘要

Abstract Psychoactive mushrooms in the genus Psilocybe have immense cultural value and have been used for centuries in Mesoamerica. Despite a recent surge in interest in these mushrooms due to emerging evidence that psilocybin, the main psychoactive compound, is a promising therapeutic for a variety of mental illnesses, their phylogeny and taxonomy remain substantially incomplete. Moreover, the recent elucidation of the psilocybin biosynthetic gene cluster is known for only five species of Psilocybe , four of which belong to only one of two major clades. We set out to improve the phylogeny for Psilocybe using shotgun sequencing of 71 fungarium specimens, including 23 types, and conducting phylogenomic analysis using 2,983 single-copy gene families to generate a fully supported phylogeny. Molecular clock analysis suggests the stem lineage arose ∼66 mya and diversified ∼53 mya. We also show that psilocybin biosynthesis first arose in Psilocybe , with 4–5 possible horizontal transfers to other mushrooms between 40 and 22 mya. Moreover, predicted orthologs of the psilocybin biosynthetic genes revealed two distinct gene orders within the cluster that corresponds to a deep split within the genus, possibly consistent with the independent acquisition of the cluster. This novel insight may predict differences in chemistry between the two major clades of the genus, providing further resources for the development of novel therapeutics.
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