Lin Shin-Yi, Chien Shih-Chang, Wang Sheng-Yang, Mau Jeng-Leun
Department of Food Science and Biotechnology, National Chung-Hsing University, Taichung, Taiwan, Republic of China; NCHU-UCD Plant and Food Biotechnology Program, Biotechnology Center, National Chung Hsing University, Taichung, Taiwan, Republic of China.
The Experimental Forest Management Office, National Chung Hsing University, Taichung, Taiwan, Republic of China.
Int J Med Mushrooms. 2015;17(8):749-61. doi: 10.1615/intjmedmushrooms.v17.i8.50.
The optimization of submerged culture of the culinary-medicinal golden oyster mushroom, Pleurotus citrinopileatus, was studied using a one-factor-at-a-time, two-stage stimulation and central composite rotatable design to produce mycelia with high ergothioneine content. The optimal culture conditions for mycelia harvested at day 22 were a temperature of 25°C, an inoculation ratio of 5%, 2% glucose, 0.5% yeast extract, and adjustment of the initial pH value to 10. The biomass and ergothioneine content were 8.28 g/L and 10.65 mg/g dry weight (dw), respectively. The addition of an amino acid precursor increased the ergothioneine content of mycelia; cysteine was the most effective. In addition, the results obtained from central composite rotatable design showed that the recommended combination for cysteine, histidine, and methionine was 8, 4, and 0.5 mmol/L, respectively. The predicted ergothioneine content was 13.90 mg/g dw, whereas the experimental maximal ergothioneine content was 14.57 mg/g dw. With the addition of complex precursors and under optimal culture conditions, mycelia harvested at days 16-20 had higher ergothioneine content. Accordingly, the information obtained could be used to produce mycelia with high ergothioneine content.
采用单因素试验、两阶段刺激和中心复合旋转设计,对食药兼用的金顶侧耳(Pleurotus citrinopileatus)深层培养进行优化,以生产麦角硫因含量高的菌丝体。第22天收获菌丝体的最佳培养条件为温度25℃、接种比例5%、葡萄糖2%、酵母提取物0.5%,初始pH值调至10。生物量和麦角硫因含量分别为8.28 g/L和10.65 mg/g干重(dw)。添加氨基酸前体可提高菌丝体的麦角硫因含量;半胱氨酸最为有效。此外,中心复合旋转设计的结果表明,半胱氨酸、组氨酸和蛋氨酸的推荐组合分别为8、4和0.5 mmol/L。预测的麦角硫因含量为13.90 mg/g dw,而实验得到的最大麦角硫因含量为14.57 mg/g dw。添加复合前体并在最佳培养条件下,第16 - 20天收获的菌丝体麦角硫因含量更高。因此,所获得的信息可用于生产麦角硫因含量高的菌丝体。