Aspergillus flavus infection and the resulting aflatoxin contamination pose serious threats to agricultural commodities, including nutmeg (Myristica fragrans). The use of indigenous yeasts offers a promising biological strategy to suppress A. flavus and reduce aflatoxin levels. This study isolated and characterised yeasts from nutmeg leaves with the ability to decontaminate aflatoxin B1 (AFB1) and inhibit A. flavus. Eight isolates were obtained, among which DAP1 identified as Aureobasidium melanogenum exhibited the strongest activity. DAP1 achieved a 50.4% reduction of AFB1 in vitro, as quantified by HPLC, and inhibited the growth of A. flavus by 43.6% in dual-culture assays. Whole-genome sequencing of DAP1 yielded a 24 Mbp genome with a GC content of 50.14%. Genome annotation revealed putative AFB1 detoxifying genes, including cytochrome P450 monooxygenase (CYP531), glutathione transferase (GST), epoxide hydrolase (EPHX1), and aflatoxin B1 aldehyde reductase (AKR7). AntiSMASH analysis further identified biosynthetic gene clusters showing similarity to bioactive metabolites such as yanuthone (50%), lucilactaene (46%), and choline (100%). In vivo assays using nutmeg seeds confirmed the antagonistic activity of DAP1, which suppressed A. flavus growth by 58.3%. LC-MS/MS analysis showed that AFB1 levels in DAP1-treated seeds were reduced to below 1.26 ppb compared to 20.03 ppb in untreated controls. Overall, these results highlight the biocontrol potential of A. melanogenum DAP1 and its promise as a natural strategy for mitigating aflatoxin contamination in agricultural products.
山东省济南市章丘区文博路2号
齐鲁师范学院 genelibs生信实验室
山东省济南市高新区舜华路750号
大学科技园北区F座4单元2楼
电话: 0531-88819269