Zhao Xuejin, Zong Yeqing, Wei Weijia, Lou Chunbo
CAS Key Laboratory of Microbial Physiological and Metabolic Engineering, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.
State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.
Life (Basel). 2022 May 6;12(5):689. doi: 10.3390/life12050689.
Thaxtomin A is a potent bioherbicide in both organic and conventional agriculture; however, its low yield hinders its wide application. Here, we report the direct cloning and heterologous expression of the thaxtomin A gene cluster in three well-characterized hosts. Then, we present an efficient, markerless and multiplex large gene cluster editing method based on in vitro CRISPR/Cas9 digestion and yeast homologous recombination. With this method, we successfully engineered the thaxtomin A cluster by simultaneously replacing the native promoters of the operon, operon and gene with strong constitutive promoters, and the yield of thaxtomin A improved to 289.5 µg/mL in heterologous M1154. To further optimize the biosynthetic pathway, we used constraint-based combinatorial design to build 27 refactored gene clusters by varying the promoter strength of every operon, and the highest titer of thaxtomin A production reached 504.6 μg/mL. Taken altogether, this work puts forward a multiplexed promoter engineering strategy to engineer secondary metabolism gene clusters for efficiently improving fermentation titers.
杀线虫菌素A在有机农业和传统农业中都是一种强效生物除草剂;然而,其低产量阻碍了它的广泛应用。在此,我们报道了杀线虫菌素A基因簇在三种特性明确的宿主中的直接克隆和异源表达。然后,我们提出了一种基于体外CRISPR/Cas9消化和酵母同源重组的高效、无标记且多重的大基因簇编辑方法。利用该方法,我们通过用强组成型启动子同时替换操纵子、操纵子和基因的天然启动子,成功改造了杀线虫菌素A基因簇,并且在异源宿主M1154中杀线虫菌素A的产量提高到了289.5μg/mL。为了进一步优化生物合成途径,我们通过基于约束的组合设计,通过改变每个操纵子的启动子强度构建了27个重构基因簇,杀线虫菌素A的最高产量达到了504.6μg/mL。综上所述,这项工作提出了一种多重启动子工程策略来改造次级代谢基因簇,以有效提高发酵产量。