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Laccase production in solid-state and submerged fermentation by Pleurotus ostreatus

机译:平菇在固态和深层发酵中生产漆酶

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A solid-state fermentation (SSF) system for production of an industrially important enzyme laccase by Pleurotus ostreatus was developed by using potato dextrose yeast extract medium and polyurethane foam as a supporting material. The maximum laccase production in the SSF system was as high as 3 x 10(5)U/L. Addition of inducers, such as copper and ferulic acid, further enhanced the laccase production in SSF. Moreover, the time required for the maximum laccase production was reduced to 6 days compared to 10 days reported earlier. The improvement achieved by the SSF system was investigated by comparing it to a submerged fermentation system (SmF), both experimentally and by using a standard theoretical model along with a parameter sensitivity analysis. Laccase production in SSF was found to be twice of that in SmF. One of the main reasons for higher laccase production in SSF compared to SmF was possibly due to the presence of higher proteolytic activity in SmF. Strong proteolytic activity in SmF presumably caused subsequent laccase degradation, which lowered the ultimate laccase production in SmF compared to SSF.
机译:利用马铃薯葡萄糖酵母提取培养基和聚氨酯泡沫作为支撑材料,开发了一种利用平菇生产工业上重要的酶漆酶的固态发酵(SSF)系统。 SSF系统中最大的漆酶产量高达3 x 10(5)U / L。添加诱导剂,例如铜和阿魏酸,进一步提高了SSF中漆酶的产量。此外,最大漆酶生产所需的时间从之前报道的10天减少到6天。通过将SSF系统与淹没式发酵系统(SmF)进行比较,无论是在实验上还是通过使用标准理论模型以及参数敏感性分析,都对SSF系统实现的改进进行了研究。发现SSF中漆酶的产量是SmF中的两倍。与SmF相比,SSF中漆酶产量更高的主要原因之一可能是由于SmF中存在更高的蛋白水解活性。 SmF中强大的蛋白水解活性可能导致随后的漆酶降解,与SSF相比,这降低了SmF中最终漆酶的产量。

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