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代谢工程中的发酵状态标记规则设计任务

A Fermentation State Marker Rule Design Task in Metabolic Engineering.

作者信息

Stalidzans Egils, Muiznieks Reinis, Dubencovs Konstantins, Sile Elina, Berzins Kristaps, Suleiko Arturs, Vanags Juris

机构信息

Institute of Microbiology and Biotechnology, University of Latvia, Jelgavas Street 1, LV-1004 Riga, Latvia.

Bioreactors.net AS, Dzerbenes Street 27, LV-1006 Riga, Latvia.

出版信息

Bioengineering (Basel). 2023 Dec 15;10(12):1427. doi: 10.3390/bioengineering10121427.

Abstract

There are several ways in which mathematical modeling is used in fermentation control, but mechanistic mathematical genome-scale models of metabolism within the cell have not been applied or implemented so far. As part of the metabolic engineering task setting, we propose that metabolite fluxes and/or biomass growth rate be used to search for a fermentation steady state marker rule. During fermentation, the bioreactor control system can automatically detect the desired steady state using a logical marker rule. The marker rule identification can be also integrated with the production growth coupling approach, as presented in this study. A design of strain with marker rule is demonstrated on genome scale metabolic model of MG1655 proposing two gene deletions enabling a measurable marker rule for succinate production using glucose as a substrate. The marker rule example at glucose consumption 10.0 is: IF (specific growth rate μ is above 0.060 h, AND CO production under 1.0, AND ethanol production above 5.5), THEN succinate production is within the range 8.2-10, where all metabolic fluxes units are mmol ∗ gDW ∗ h. An objective function for application in metabolic engineering, including productivity features and rule detecting sensor set characterizing parameters, is proposed. Two-phase approach to implementing marker rules in the cultivation control system is presented to avoid the need for a modeler during production.

摘要

数学建模在发酵控制中有多种应用方式,但细胞内代谢的机械数学基因组规模模型目前尚未得到应用或实施。作为代谢工程任务设定的一部分,我们建议使用代谢物通量和/或生物量生长速率来寻找发酵稳态标记规则。在发酵过程中,生物反应器控制系统可以使用逻辑标记规则自动检测所需的稳态。标记规则识别也可以与本研究中提出的生产生长耦合方法相结合。在MG1655的基因组规模代谢模型上展示了具有标记规则的菌株设计,提出了两个基因缺失,使得能够使用葡萄糖作为底物对琥珀酸生产制定可测量的标记规则。葡萄糖消耗为10.0时的标记规则示例为:如果(比生长速率μ高于0.060 h,且CO产量低于1.0,且乙醇产量高于5.5),那么琥珀酸产量在8.2 - 10范围内,其中所有代谢通量单位均为mmol ∗ gDW ∗ h。提出了一个用于代谢工程的目标函数,包括生产力特征和表征规则检测传感器集的参数。提出了在培养控制系统中实施标记规则的两阶段方法,以避免生产过程中对建模人员的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5801/10740952/3b115a388eea/bioengineering-10-01427-g001.jpg

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