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电刺激辅助黑曲霉 ipe-1 生产聚(β-L-苹果酸)。

Electrolytic stimulation in aid of poly(β-L-malic acid) production by Aureobasidium melanogenum ipe-1.

机构信息

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China; School of Chemical Engineering, University of Chinese Academy of Sciences, Beijing 100049, China.

Agro-product Safety Research Center, Chinese Academy of Inspection and Quarantine, Beijing 100123, China.

出版信息

Int J Biol Macromol. 2022 Dec 31;223(Pt A):722-731. doi: 10.1016/j.ijbiomac.2022.11.026. Epub 2022 Nov 10.

Abstract

Poly (β-L-malic acid) (PMLA) is attracting industrial interest for its potential application in medicine and other industries. In this study, electrolytic stimulation assisted PMLA production was developed. Firstly, it was found that the pentavalent nitrogen source (i.e., NO) was more suitable for PMLA production. Secondly, a usual single-chamber bioelectric-fermentation system (BES) cannot improve PMLA production, which can only promote cell growth. Then, a new single-chamber BES with an external circulation was developed, where the PMLA metabolism was further intensified. Finally, the integration of NO addition and electrolytic stimulation mode (c) showed a positive synergy on the PMLA production. Compared to the case without NO addition and electrolytic stimulation, the PMLA production was increased by 22.9 % using the integrated process. Moreover, compared to the case without the electrolytic stimulation mode (c), it was revealed that the different genes involved in 12 metabolic subsystems using the integrated process, where 31 and 177 genes were up-regulated and down-regulated, respectively. The up-regulated genes were mainly participated in melanin metabolic process, catalase activity, and oxidoreductase activity. Hence, the integration of electrolytic stimulation represents a novel approach to improve PMLA production.

摘要

聚(β- L -苹果酸)(PMLA)因其在医学和其他行业的潜在应用而引起工业关注。在这项研究中,开发了电解刺激辅助 PMLA 生产。首先,发现五价氮源(即 NO)更适合 PMLA 生产。其次,通常的单室生物电化学发酵系统(BES)不能提高 PMLA 产量,只能促进细胞生长。然后,开发了一种带有外部循环的新型单室 BES,进一步强化了 PMLA 代谢。最后,NO 添加和电解刺激模式(c)的集成对 PMLA 生产表现出积极的协同作用。与不添加 NO 和不进行电解刺激的情况相比,集成工艺使 PMLA 产量增加了 22.9%。此外,与不使用电解刺激模式(c)的情况相比,使用集成工艺发现涉及 12 个代谢子系统的不同基因,分别上调和下调 31 和 177 个基因。上调的基因主要参与黑色素代谢过程、过氧化氢酶活性和氧化还原酶活性。因此,电解刺激的集成代表了一种提高 PMLA 产量的新方法。

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