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共表达异丙醇合成操纵子和 eGFP 以监测铜绿假单胞菌在异丙醇生产过程中的鲁棒性。

Co-expression of an isopropanol synthetic operon and eGFP to monitor the robustness of Cupriavidus necator during isopropanol production.

机构信息

TBI, Université de Toulouse, CNRS, INRA, INSA, Toulouse, France.

TBI, Université de Toulouse, CNRS, INRA, INSA, Toulouse, France.

出版信息

Enzyme Microb Technol. 2022 Nov;161:110114. doi: 10.1016/j.enzmictec.2022.110114. Epub 2022 Aug 19.

Abstract

Phenotypic heterogeneity in bioprocesses is suspected to reduce performances, even in case of monoclonal cultures. Here, robustness of an engineered isopropanol-overproducing strain and heterogeneity of its plasmid expression level were evaluated in fed-batch cultures. Previously, eGFP was identified as a promising plasmid expression reporter for C. necator. Here, the behavior of 3 engineered strains (isopropanol overproducer, eGFP producer, and isopropanol/eGFP co-producers) was compared at the single-cell and population levels. Production yields and rates have been shown to be dependent on isopropanol/acetone tolerance. A link could be established between the variations in the fluorescence intensity distribution and isopropanol/acetone production using the eGFP-biosensor. Co-production of isopropanol and eGFP exhibited cumulative metabolic burden compared to single overexpression (isopropanol or eGFP). Expression of eGFP during isopropanol production resulted in lower isopropanol tolerance with a loss of membrane integrity resulting in protein leakage and reduced plasmid expression. The co-expression of heterologous isopropanol pathway and eGFP-biosensor enabled to demonstrate the heterogeneity of robustness and plasmid expression at the single cell level of C. necator. It highlighted the conflicting interactions between isopropanol overproduction and eGFP reporter system. Fluorescent reporter strains, a crucial tool for monitoring subpopulation heterogeneity although biases have to be considered.

摘要

生物过程中的表型异质性被怀疑会降低性能,即使在单克隆培养的情况下也是如此。在这里,评估了工程异丙醇高产菌株及其质粒表达水平的异质性在分批补料培养中的稳健性。以前,eGFP 被鉴定为 C. necator 中一种有前途的质粒表达报告基因。在这里,比较了 3 种工程菌株(异丙醇高产菌、eGFP 生产菌和异丙醇/eGFP 共生产菌)在单细胞和群体水平上的行为。已经表明生产产率和速率取决于异丙醇/丙酮耐受性。可以使用 eGFP 生物传感器建立荧光强度分布和异丙醇/丙酮产量之间的关系。与单个过表达(异丙醇或 eGFP)相比,异丙醇和 eGFP 的共生产表现出累积的代谢负担。在生产异丙醇过程中表达 eGFP 会导致较低的异丙醇耐受性,从而导致膜完整性丧失,导致蛋白质泄漏和质粒表达降低。异源异丙醇途径和 eGFP 生物传感器的共表达使我们能够在 C. necator 的单细胞水平上展示稳健性和质粒表达的异质性。它突出了异丙醇过量生产和 eGFP 报告系统之间的相互冲突的相互作用。荧光报告菌株是监测亚群异质性的重要工具,尽管需要考虑到偏差。

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