Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, Jiangnan University, Wuxi, 214122, China.
Science Center for Future Foods, Jiangnan University, Wuxi, 214122, China.
ACS Synth Biol. 2021 Sep 17;10(9):2197-2209. doi: 10.1021/acssynbio.1c00086. Epub 2021 Aug 17.
Biosynthesis by microorganisms using renewable feedstocks is an important approach for realizing sustainable chemical manufacturing. However, cell-to-cell variation in biosynthesis capability during fermentation restricts the robustness and efficiency of bioproduction, hampering the industrialization of biosynthesis. Herein, we developed an inducible population quality control system (iPopQC) for dynamically modulating the producing and nonproducing subpopulations of engineered , which was constructed via inducible promoter- and metabolite-responsive biosensor-based genetic circuit for regulating essential genes. Moreover, iPopQC achieved a 1.97-fold increase in -acetylneuraminic acid (NeuAc) titer by enriching producing cell subpopulation during cultivation, representing 52% higher than that of previous PopQC. Strains with double-output iPopQC cocoupling the expression of double essential genes with NeuAc production improved production robustness further, retaining NeuAc production throughout 96 h of fermentation, upon which the strains cocoupling one essential gene expression with NeuAc production abolished the production ability.
利用可再生原料通过微生物进行生物合成是实现可持续化学制造的重要途径。然而,发酵过程中生物合成能力的细胞间差异限制了生物生产的稳健性和效率,阻碍了生物合成的工业化。在此,我们开发了一种诱导型群体质量控制系统(iPopQC),用于动态调节工程菌的生产和非生产亚群,该系统是通过诱导型启动子和代谢物响应生物传感器的遗传电路构建的,用于调节必需基因。此外,通过在培养过程中富集生产细胞亚群,iPopQC 使神经氨酸(NeuAc)产量提高了 1.97 倍,比之前的 PopQC 高 52%。具有双输出 iPopQC 的菌株通过与 NeuAc 生产偶联双必需基因的表达进一步提高了生产稳健性,在 96 h 的发酵过程中保留了 NeuAc 生产能力,而与 NeuAc 生产偶联一个必需基因表达的菌株则丧失了生产能力。