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油酸和真菌激发子对药用真菌深层培养生产桦木酸的刺激作用

Stimulatory Effects of Oleci Acid and Fungal Elicitor on Betulinic Acid Production by Submerged Cultivation of Medicinal Mushroom .

作者信息

Lou Hanghang, Li Hao, Wei Tianyu, Chen Qihe

机构信息

Department of Food Science and Nutrition, Zhejiang University, Hangzhou 310058, China.

出版信息

J Fungi (Basel). 2021 Mar 31;7(4):266. doi: 10.3390/jof7040266.

Abstract

To evaluate the novel strategy of oleic acid and fungal elicitor (made from ) to elicit betulinic acid biosynthesis in medicinal mushroom , we conduct the stimulatory effects investigation for synthesizing betulinic acid from betulin. HPLC results indicated oleic acid and fungal elicitor were effective stimulators. The supplementation of 1.0 g/L oleic acid led to the highest increase of betulinic acid either in dry mycelia or fermentation broth by 2-fold of the control. Fungal elicitor at 45 mg/L markedly increases mycelia growth by 146.0% and enhance intracellular betulinic acid accumulation by 429.5% as compared to the controls. Quantification of transcription levels determined that oleic acid, fungal elicitor and their combinations could induce the expressions of key genes involved in betulinic acid biosynthesis, such as HMG-CoA reductase and squalene synthase. These findings indicated that oleic acid and fungal elicitor could enhance betulinic acid metabolism by up-regulating key genes expression.

摘要

为评估油酸和真菌激发子(由……制成)引发药用蘑菇中桦木酸生物合成的新策略,我们对从桦木醇合成桦木酸进行了刺激效应研究。高效液相色谱结果表明油酸和真菌激发子是有效的刺激物。添加1.0 g/L油酸使干菌丝体或发酵液中桦木酸的增加量最高,比对照增加了2倍。与对照相比,45 mg/L的真菌激发子显著使菌丝体生长增加146.0%,并使细胞内桦木酸积累增加429.5%。转录水平定量分析确定,油酸、真菌激发子及其组合可诱导参与桦木酸生物合成的关键基因的表达,如3-羟基-3-甲基戊二酰辅酶A还原酶和角鲨烯合酶。这些发现表明,油酸和真菌激发子可通过上调关键基因表达来增强桦木酸代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c42a/8066064/df43c380c2ae/jof-07-00266-g001.jpg

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