Department Pharmaceutical Microbiology at the Hans-Knöll-Institute, Friedrich-Schiller-Universität, Beutenbergstrasse 11a, 07745, Jena, Germany.
Department of Chemistry & Biochemistry, University of Massachusetts, 285 Old Westport Road, Dartmouth, MA, 02747, USA.
Chembiochem. 2022 Jul 19;23(14):e202200249. doi: 10.1002/cbic.202200249. Epub 2022 Jun 9.
Psilocybe magic mushrooms are best known for their main natural product, psilocybin, and its dephosphorylated congener, the psychedelic metabolite psilocin. Beyond tryptamines, the secondary metabolome of these fungi is poorly understood. The genomes of five species (P. azurescens, P. cubensis, P. cyanescens, P. mexicana, and P. serbica) were browsed to understand more profoundly common and species-specific metabolic capacities. The genomic analyses revealed a much greater and yet unexplored metabolic diversity than evident from parallel chemical analyses. P. cyanescens and P. mexicana were identified as aeruginascin producers. Lumichrome and verpacamide A were also detected as Psilocybe metabolites. The observations concerning the potential secondary metabolome of this fungal genus support pharmacological and toxicological efforts to find a rational basis for yet elusive phenomena, such as paralytic effects, attributed to consumption of some magic mushrooms.
迷幻蘑菇以其主要天然产物裸盖菇素和去磷酸化同系物迷幻代谢物赛洛西宾而闻名。除了色胺类物质外,这些真菌的次生代谢组还知之甚少。浏览了五个物种(天蓝裸盖菇、古巴裸盖菇、蓬托裸盖菇、墨西哥裸盖菇和塞尔维亚裸盖菇)的基因组,以更深入地了解常见和物种特异性的代谢能力。基因组分析显示,与平行化学分析相比,代谢多样性要大得多,但尚未得到充分探索。天蓝裸盖菇和墨西哥裸盖菇被鉴定为 Aeruginascin 的产生菌。还检测到 Lumichrome 和 verpacamide A 是迷幻蘑菇的代谢物。关于该真菌属潜在次生代谢组的观察结果支持药理学和毒理学研究,以寻找一些迷幻蘑菇导致的麻痹作用等难以捉摸现象的合理基础。