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酸性pH冲击诱导链霉菌属M-Z18利用农业工业副产品在补料分批发酵中过量生产ε-聚-L-赖氨酸。

Acidic pH shock induced overproduction of ε-poly-L-lysine in fed-batch fermentation by Streptomyces sp. M-Z18 from agro-industrial by-products.

作者信息

Ren Xi-Dong, Chen Xu-Sheng, Zeng Xin, Wang Liang, Tang Lei, Mao Zhong-Gui

机构信息

The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, 1800 Lihu Road, Wuxi, 214122, Jiangsu, China.

出版信息

Bioprocess Biosyst Eng. 2015 Jun;38(6):1113-25. doi: 10.1007/s00449-015-1354-2. Epub 2015 Jan 21.

Abstract

ε-Poly-L-lysine (ε-PL) is produced by Streptomyces as a secondary metabolite with wide industrial applications, but its production still needs to be further enhanced. Environmental stress is an important approach for the promotion of secondary metabolites production by Streptomyces. In this study, the effect of acidic pH shock on enhancing ε-PL production by Streptomyces sp. M-Z18 was investigated in a 5-L fermenter. Based on the evaluation of acidic pH shock on mycelia metabolic activity and shock parameters optimization, an integrated pH-shock strategy was developed as follows: pre-acid-shock adaption at pH 5.0 to alleviate the damage caused by the followed pH shock, and then acidic pH shock at 3.0 for 12 h (including pH decline from 4.0 to 3.0) to positively regulate mycelia metabolic activity, finally restoring pH to 4.0 to provide optimal condition for ε-PL production. After 192 h of fed-batch fermentation, the maximum ε-PL production and productivity reached 54.70 g/L and 6.84 g/L/day, respectively, which were 52.50 % higher than those of control without pH shock. These results demonstrated that acidic pH shock is an efficient approach for improving ε-PL production. The information obtained should be useful for ε-PL production by other Streptomyces.

摘要

ε-聚-L-赖氨酸(ε-PL)是链霉菌产生的一种具有广泛工业应用的次级代谢产物,但其产量仍需进一步提高。环境胁迫是促进链霉菌次级代谢产物产生的重要途径。本研究在5-L发酵罐中研究了酸性pH冲击对提高链霉菌M-Z18产生ε-PL的影响。基于对酸性pH冲击对菌丝体代谢活性的评估和冲击参数优化,制定了如下综合pH冲击策略:在pH 5.0进行预酸冲击适应,以减轻随后的pH冲击造成的损害,然后在pH 3.0进行12 h的酸性pH冲击(包括pH从4.0降至3.0),以正向调节菌丝体代谢活性,最后将pH恢复至4.0,为ε-PL产生提供最佳条件。补料分批发酵192 h后,ε-PL的最大产量和生产率分别达到54.70 g/L和6.84 g/(L·天),比无pH冲击的对照分别提高了52.50%。这些结果表明,酸性pH冲击是提高ε-PL产量的有效方法。所获得的信息对其他链霉菌生产ε-PL应具有参考价值。

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