菌丝体
响应面法
发酵
化学
产量(工程)
食品科学
碳源
氮气
体积热力学
乙酸乙酯
色谱法
生物
植物
生物化学
材料科学
有机化学
量子力学
物理
冶金
作者
Yudie He,Min‐Han Tan,Qianping Cao,Xu Linghu,Ze Yang,Qingfeng Meng,Shaobin Fu
标识
DOI:10.1615/intjmedmushrooms.2024052497
摘要
Liquid fermentation could yield substantial mycelia mass and valuable secondary metabolites in large-scale production within a short, fermented duration. The liquid fermented process of mycelia of <i>Poria cocos</i> was optimized using a combination of single-factor experimentation and response surface methodology (RSM) to obtain more extract of <i>P. cocos.</i> The optimal conditions were determined as follows: The carbon source concentration at 1%, the nitrogen source concentration at 1%, the inoculum volume at 7% and a culture time of 9 d. Under these conditions, the ethyl acetate extract mass of <i>P. cocos</i> mycelia reached 0.0577 ± 0.0041 mg. There were significant interactions between nitrogen source concentration and cultivation time. The predicted values by the mathematical model based on the response surface analysis showed a close agreement with experimental data.
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