Meng Linghui, Luo Biaobiao, Yang Yang, Faruque Mohammad Omar, Zhang Jiuliang, Li Xiaohua, Hu Xuebo
Laboratory of Natural Medicine and Molecular Engineering, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.
Ethnobotany and Pharmacognosy Laboratory, Department of Botany, University of Chittagong, Chittagong 4331, Bangladesh.
J Fungi (Basel). 2021 Oct 31;7(11):926. doi: 10.3390/jof7110926.
The liquid fermentation of is a promising alternative source for fungus production compared to the wildly grown fruiting body. Elicitation is a strong tool to enhance the productivity in microbial cells to obtain more compounds of interest. In this study, in order to improve the fungus growth and its terpenoids production, various vegetable oils were added in the fermentation broth of . It was found that corn oil from a group of vegetable oils exhibited the best effect on the biomass and triterpenoid content. After optimization, the initial addition of 1% (/) corn oil plus the inoculation of 10% (/) mycelia led to a maximum triterpenoid yield (532.3 mg L), which was increased as much as fourfold compared to the blank control. Differential transcriptome analysis demonstrated that corn oil significantly enriched several metabolic pathways including glycolysis/gluconeogenesis, propanoate metabolism and transmembrane hydrophobins. The enriched pathways interacted with deferentially expressed genes (DEGs) induced by corn oil treatment. Our research provides a potential strategy for the large production of triterpenoids by the improved fermentation of .
与野生生长的子实体相比,[具体真菌名称]的液体发酵是一种很有前景的真菌生产替代来源。诱导是提高微生物细胞生产力以获得更多目标化合物的有力工具。在本研究中,为了促进[具体真菌名称]的生长及其萜类化合物的产生,在[具体真菌名称]的发酵培养基中添加了各种植物油。结果发现,一组植物油中的玉米油对生物量和三萜含量的影响最佳。经过优化,初始添加1%(体积/体积)的玉米油并接种10%(体积/体积)的菌丝体,可使三萜产量达到最大值(532.3毫克/升),与空白对照相比增加了四倍之多。差异转录组分析表明,玉米油显著富集了包括糖酵解/糖异生、丙酸代谢和跨膜疏水蛋白在内的多种代谢途径。这些富集的途径与玉米油处理诱导的差异表达基因(DEGs)相互作用。我们的研究为通过改进[具体真菌名称]的发酵大规模生产三萜类化合物提供了一种潜在策略。