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基于群体感应的控制电路的开发用于调控柚皮素生产系统中共培养物的种群组成。

Development of a Quorum-Sensing Based Circuit for Control of Coculture Population Composition in a Naringenin Production System.

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

出版信息

ACS Synth Biol. 2020 Mar 20;9(3):590-597. doi: 10.1021/acssynbio.9b00451. Epub 2020 Feb 21.

Abstract

As synthetic biology and metabolic engineering tools improve, it is feasible to construct more complex microbial synthesis systems that may be limited by the machinery and resources available in an individual cell. Coculture fermentation is a promising strategy for overcoming these constraints by distributing objectives between subpopulations, but the primary method for controlling the composition of the coculture of production systems has been limited to control of the inoculum composition. We have developed a quorum sensing (QS)-based growth-regulation circuit that provides an additional parameter for regulating the composition of a coculture over the course of the fermentation. Implementation of this tool in a naringenin-producing coculture resulted in a 60% titer increase over a system that was optimized by varying inoculation ratios only. We additionally demonstrated that the growth control circuit can be implemented in combination with a communication module that couples transcription in one subpopulation to the cell-density of the other population for coordination of behavior, resulting in an additional 60% improvement in naringenin titer.

摘要

随着合成生物学和代谢工程工具的改进,构建更复杂的微生物合成系统成为可能,而这些系统可能会受到单个细胞中可用的机械和资源的限制。共培养发酵是一种很有前途的策略,可以通过在亚群之间分配目标来克服这些限制,但生产系统共培养的组成控制的主要方法一直限于控制接种物的组成。我们开发了一种基于群体感应(QS)的生长调节回路,为发酵过程中调节共培养物的组成提供了另一个参数。在柚皮素生产共培养物中实施这一工具,使产物浓度比仅通过改变接种比例优化的系统提高了 60%。我们还证明,生长控制回路可以与一个通信模块结合使用,该模块将一个亚群的转录与另一群体的细胞密度耦合起来,以协调行为,从而使柚皮素的浓度进一步提高 60%。

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