聚乳酸生物合成路径优化探究

Biosynthesis Pathway Optimization of Polylactic Acid

  • 摘要: 聚乳酸是重要的生物降解材料之一,具有良好的生物相容性、生物降解性以及环境友好性等特点. 针对代谢流中影响乙酰辅酶A含量的三个关键基因ackA、iclR和arcA以及影响细胞分裂方式的minCD基因,利用基因工程技术,设计敲除实验. 结果显示,双敲除菌株BL21(DE3)ΔackAΔarcA/pETDuet-1_phac_pct/pACYCDuet-1_sulA_ldhA是产量最高改造菌株,最终发酵所得产物产量为322.3 mg/L、占细胞干重质量分数为14.90%,重均分子量为26 352. 有关研究成果可以为聚乳酸生物制造关键技术进一步优化和工艺放大提供理论和数据参考.

     

    Abstract: Possessing good biocompatibility, biodegradability, and environmental friendliness, polylactic acid (PLA) is one of the important biodegradable materials. In this study, a knockout experiment was designed based on genetic engineering technology for the three key genes ackA, iclR and arcA that affect the content of acetyl-CoA in metabolic flux, as well as for the minCD gene that affects cell division mode. The results show that the double-knockout strain BL21(DE3)ΔackAΔarcA/pETDuet-1_phac_pct/pACYCDuet-1_sulA_ldhA is of the modified strain with the highest yield, obtaining the final fermentation product yield 322.3 mg/L, the dry weight of cells 14.90 wt%, and the average molecular weight 26 352. The research achievement is beneficial to the further optimization and development of key technologies, providing theoretical and data reference for polylactic acid bio-manufacturing.

     

/

返回文章
返回