虫草素
冬虫夏草
蛹虫草
鱼藤酮
发酵
生物化学
代谢组学
生物
代谢途径
转录组
生物合成
新陈代谢
植物
酶
基因表达
生物信息学
基因
线粒体
作者
You-Chu Ma,Huang Ping,Xiao‐Ling Wang,Gao‐Qiang Liu
标识
DOI:10.1016/j.biortech.2023.128705
摘要
Cordycepin is the key pharmacologically active compound of Cordyceps militaris, and various fermentation strategies have been developed to increase cordycepin production. This study aimed to investigate the effect of rotenone on cordycepin biosynthesis in submerged fermentation of C. militaris, and also to explore its possible induction mechanisms via multi-omics analysis. Adding 5 mg/L rotenone significantly increased the cordycepin production by 316.09 %, along with mycelial growth inhibition and cell wall destruction. Moreover, transcriptomic analysis and metabolomic analysis revealed the accumulation of cordycepin was promoted by alterations in energy metabolism and amino acid metabolism pathways. Finally, the integration analysis of the two omics confirmed rotenone altered the nucleotide metabolism pathway toward adenosine and up-regulated the cordycepin synthesis genes (cns1-3) to convert adenosine to cordycepin. This work reports, for the first time, rotenone could act as an effective inducer of cordycepin synthesis.
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