生物
功能(生物学)
次生代谢物
基因
微生物学
细胞生物学
代谢物
生物化学
作者
G. Wang,Huomiao Ran,Jibiao Fan,Nancy P. Keller,Zhiguo Liu,Fan Wu,Wen‐Bing Yin
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-04-29
卷期号:8 (17)
被引量:31
标识
DOI:10.1126/sciadv.abo6094
摘要
Microbial communication has attracted notable attention as an indicator of microbial interactions that lead to marked alterations of secondary metabolites (SMs) in varied environments. However, the mechanisms responsible for SM regulation are not fully understood, especially in fungal-fungal interactions. Here, cocultivation of an endophytic fungus Epicoccum dendrobii with the model fungus Aspergillus nidulans and several other filamentous fungi triggered widespread alteration of SMs. Multiple silent biosynthetic gene clusters in A. nidulans were activated by transcriptome and metabolome analysis. Unprecedentedly, gene deletion and replacement proved that a partial loss-of-function VeA1 protein, but not VeA, was associated with the widespread SM changes in both A. nidulans and A. fumigatus during cocultivation. VeA1 regulation required the transcription factor SclB and the velvet complex members LaeA and VelB for producing aspernidines as representative formation of SMs in A. nidulans. This study provides new insights into the mechanism that trigger metabolic changes during fungal-fungal interactions.
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