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精确调节特定耗氧率以增强球形红细菌的辅酶Q生物合成。

Precise regulating the specific oxygen consumption rate to strengthen the CoQ biosynthesis by Rhodobater sphaeroides.

作者信息

Li Bo, Ge Yan, Liang Jianguang, Zhu Zhichun, Chen Biqin, Li Dan, Zhuang Yingping, Wang Zejian

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Rd, P.O. box 329#, Shanghai, 200237, China.

College of Pharmaceutical and Life Sciences, Changzhou University, Changzhou, 213164, China.

出版信息

Bioresour Bioprocess. 2024 Nov 5;11(1):106. doi: 10.1186/s40643-024-00813-0.

Abstract

Coenzyme Q (CoQ) is the most consumed dietary supplement and mainly biosynthesized by aerobic fermentation of Rhodobacter sphaeroides (R. sphaeroides). Oxygen supply was identified as a bottleneck for improving CoQ yield in R. sphaeroides. In this study, a precise regulation strategy based on dielectric spectroscopy (DS) was applied to further improve CoQ biosynthesis by R. sphaeroide. First, a quantitative response model among viable cells, cell morphology, and oxygen uptake rate (OUR) was established. DS could be used to detect viable R. sphaeroides cells, and the relationship among cell morphology, CoQ biosynthesis, and OUR was found to be significant. Based on this model, the online specific oxygen consumption rate (Q) control strategy was successfully applied to the CoQ fermentation process. Q controlled at 0.07 ± 0.01 × 10mmol/cell/h was most favorable for CoQ biosynthesis, resulting in a 28.3% increase in CoQ production. Based on the multi-parameters analysis and online Q control, a precise online nutrient feeding strategy was established using conductivity detected by DS. CoQ production was improved by 35%, reaching 3384 mg/L in 50 L bioreactors. This online control strategy would be effectively applied for improving industrial CoQ production, and the precise fermentation control strategy could also be applied to other fermentation process.

摘要

辅酶Q(CoQ)是消费最多的膳食补充剂,主要通过球形红细菌(R. sphaeroides)的有氧发酵生物合成。氧气供应被认为是提高球形红细菌中CoQ产量的瓶颈。在本研究中,基于介电谱(DS)的精确调控策略被应用于进一步提高球形红细菌的CoQ生物合成。首先,建立了活细胞、细胞形态和氧摄取率(OUR)之间的定量响应模型。DS可用于检测球形红细菌活细胞,并且发现细胞形态、CoQ生物合成和OUR之间的关系显著。基于该模型,在线比氧消耗率(Q)控制策略成功应用于CoQ发酵过程。将Q控制在0.07±0.01×10mmol/细胞/小时对CoQ生物合成最为有利,CoQ产量提高了28.3%。基于多参数分析和在线Q控制,利用DS检测的电导率建立了精确的在线营养物进料策略。在50 L生物反应器中,CoQ产量提高了35%,达到3384 mg/L。这种在线控制策略将有效地应用于提高工业CoQ产量,并且精确的发酵控制策略也可应用于其他发酵过程。

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