Streptomyces noursei的选育、产孢恢复及pH冲击强化合成ε-聚赖氨酸的研究
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山东大学海洋学院,山东 威海 264209

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李树(1984—),男,博士,副教授,硕士研究生导师,主要从事发酵工程、代谢工程研究。E-mail:lishu2016@sdu.edu.cn

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山东省自然科学基金面上项目(ZR2023MC081)。


Breeding and Sporulation Recovery of Streptomyces noursei and ε-Poly-lysine Synthesis Enhancement by pH Shocks
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Marine College, Shandong University, Weihai 264209, China

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    摘要:

    【目的】以Streptomyces noursei GX6(S. noursei GX6)为出发菌株,通过菌种选育提升其ε-聚赖氨酸(ε-PL)产量,并解决突变株产孢能力退化的问题,再利用pH调控发酵进一步提高突变株的ε-PL产量。【方法】采用离子注入诱变结合多抗生素抗性筛选的方法选育S. noursei GX6,从中筛选ε-PL高产突变株;然后对培养高产菌株的培养基成分和质量浓度进行优化,观察其产孢情况;最后在5 L发酵罐中进行恒定pH发酵和pH冲击发酵。【结果】选育获得高产突变株S. noursei T9,ε-PL摇瓶产量为2.97 g/L;采用MGY培养基(含黄豆粉、甘露醇、葡萄糖、酵母提取物和CaCO3)能有效恢复S. noursei T9的产孢能力,其连续传代10次后仍能维持遗传稳定性;在发酵罐中进行恒定pH 4.0的补料分批发酵,S. noursei T9的ε-PL产量达56.8 g/L,相较于S. noursei GX6的47.2 g/L提高了20.3%;进一步采用pH冲击策略,单次冲击可使其ε-PL产量提升至62.1 g/L,增幅为9.3%,而2次pH冲击则使ε-PL产量进一步提高至69.5 g/L,生产效率达到0.006 3 g/(g·h)。【结论】该研究为解决S. noursei GX6在工业生产应用中孢子形成能力不足及提高ε-PL产量提供了实用策略。

    Abstract:

    [Objective] With Streptomyces noursei GX6 (S. noursei GX6) as the starting strain, strain breeding was carried out to increase the yield of ε-poly-lysine (ε-PL) and solve the problem of sporulation ability degradation of the mutant strain. Then, pH regulation of fermentation was employed to further increase the ε-PL yield of the mutant strain.[Method] Ion implantation mutagenesis combined with multi-antibiotic resistance screening was carried out for S. noursei GX6, and high-yield mutant strains of ε-PL were screened. Then, the components and their mass concentrations of various culture media were optimized for cultivating the high-yield strain, and the sporulation was observed. Finally, fermentation experiments with constant pH and pH shocks were carried out in a 5 L fermenters.[Result] The high-yield mutant strain S. noursei T9 obtained through breeding had a ε-PL yield of 2.97 g/L in shake flasks. The use of the MGY medium (containing soybean powder, mannitol, glucose, yeast extract, and CaCO3) effectively restored the sporulation ability of S. noursei T9. Moreover, this strain maintained genetic stability after 10 passages. During the fed-batch fermentation with constant pH 4.0 in the fermenter, the ε-PL yield of S. noursei T9 reached 56.8 g/L, which was 20.3% higher than that (47.2 g/L) of S. noursei GX6. When the pH shock strategy was further adopted, a single shock increased the ε-PL yield to 62.1 g/L, with an increase of 9.3%, while two pH shocks further increased the ε-PL yield to 69.5 g/L, with the production efficiency reaching 0.006 3 g/(g·h).[Conclusion] This study provides practical strategies for addressing the insufficient sporulation capacity and increasing the ε-PL yield of S. noursei in industrial production.

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谭蕾,王双羽,李树.Streptomyces noursei的选育、产孢恢复及pH冲击强化合成ε-聚赖氨酸的研究[J].食品与生物技术学报,2026,45(4):9-17.

TAN Lei, WANG Shuangyu, LI Shu. Breeding and Sporulation Recovery of Streptomyces noursei and ε-Poly-lysine Synthesis Enhancement by pH Shocks[J]. Journal of Food Science and Biotechnology,2026,45(4):9-17.

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  • 收稿日期:2025-09-16
  • 最后修改日期:2025-10-15
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  • 在线发布日期: 2026-08-08
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