Insights into the Chemical Diversity of Selected Fungi from the Tza Itzá Cenote of the Yucatan Peninsula
枝孢
微生物学
曲霉
生物
微生物
真菌
分枝杆菌
细菌
植物
遗传学
作者
Carlos A. Fajardo‐Hernández,Firoz Shah Tuglak Khan,Laura Flores‐Bocanegra,Alejandra Prieto‐Davó,Baojie Wan,Rui Ma,Mallique Qader,Rodrigo Villanueva-Silva,Anahí Martínez‐Cárdenas,Marian A. López-Lobato,Shabnam Hematian,Scott G. Franzblau,Huzefa A. Raja,Rodolfo García‐Contreras,Mario Figueroa
出处
期刊:ACS omega [American Chemical Society] 日期:2022-03-28卷期号:7 (14): 12171-12185被引量:6
Cenotes are habitats with unique physical, chemical, and biological features. Unexplored microorganisms from these sinkholes represent a potential source of bioactive molecules. Thus, a series of cultivable fungi (Aspergillus spp. NCA257, NCA264, and NCA276, Stachybotrys sp. NCA252, and Cladosporium sp. NCA273) isolated from the cenote Tza Itzá were subjected to chemical, coculture, and metabolomic analyses. Nineteen compounds were obtained and tested for their antimicrobial potential against ESKAPE pathogens, Mycobacterium tuberculosis, and nontuberculous mycobacteria. In particular, phenylspirodrimanes from Stachybotrys sp. NCA252 showed significant activity against MRSA, MSSA, and mycobacterial strains. On the other hand, the absolute configuration of the new compound 17-deoxy-aspergillin PZ (1) isolated from Aspergillus sp. NCA276 was established via single-crystal X-ray crystallography. Also, the chemical analysis of the cocultures between Aspergillus and Cladosporium strains revealed the production of metabolites that were not present or were barely detected in the monocultures. Finally, molecular networking analysis of the LC-MS-MS/MS data for each fungus was used as a tool for the annotation of additional compounds, increasing the chemical knowledge on the corresponding fungal strains. Overall, this is the first systematic chemical study on fungi isolated from a sinkhole in Mexico.