State Key Laboratory of Microbial Technology, Shandong University, Qingdao, People's Republic of China.
Tianjin Key Laboratory of Microbial Functional Genomics, TEDA Institute of Biological Sciences and Biotechnology, Nankai University, Tianjin, People's Republic of China.
Biotechnol Bioeng. 2024 Feb;121(2):749-756. doi: 10.1002/bit.28608. Epub 2023 Nov 23.
Streptococcus thermophilus has been extensively used in industrial milk fermentation. However, lack of efficient genetic manipulation approaches greatly hampered the industrial application of this species. Here, we repurposed the endogenous CRISPR1 and CRISPR3 systems, both belong to type II-A CRISPR-Cas9, by delivering a self-targeting CRISPR array with DNA repair template into S. thermophilus LMD-9. We achieved 785-bp deletion in lacZ gene by repurposing CRISPR1 and CRISPR3 systems with efficiencies of 35% and 59%, respectively, when 1-kb DNA repair template was provided. While providing with 1.5-kb repair template, the editing efficiency for deletion in lacZ gene reached 90% using CRISPR3 systems. Diverse editing outcomes encompassing a stop code insertion and single nucleotide variation within lacZ, as well as a 234-bp DNA fragment insertion upstream of ster_0903, were generated with high efficiencies of 75%-100% using the CRISPR3 system. Harnessing the customized endogenous CRISPR3 system to target six genes of eps gene cluster, we obtained six single-gene knockout mutants with efficiencies of 29%-80%, and proved that the epsA, epsE, and epsG were the key genes affecting exopolysaccharides biosynthesis in S. thermophilus LMD-9. Altogether, repurposing the native type II-A CRISPR-Cas9 can be served as a toolkit for precise genome engineering in S. thermophilus for biotechnological applications.
嗜热链球菌被广泛应用于工业牛奶发酵。然而,缺乏有效的遗传操作方法极大地限制了该物种的工业应用。在这里,我们通过将带有 DNA 修复模板的自我靶向 CRISPR 阵列递送到嗜热链球菌 LMD-9 中,重新利用了属于 II-A 型 CRISPR-Cas9 的内源性 CRISPR1 和 CRISPR3 系统。我们通过重新利用 CRISPR1 和 CRISPR3 系统,分别实现了 lacZ 基因 785-bp 的缺失,效率分别为 35%和 59%,当提供 1-kb 的 DNA 修复模板时。当提供 1.5-kb 的修复模板时,使用 CRISPR3 系统,lacZ 基因缺失的编辑效率达到 90%。使用 CRISPR3 系统,高效地产生了多种编辑结果,包括 lacZ 内的一个终止密码子插入和单个核苷酸变异,以及 ster_0903 上游的 234-bp DNA 片段插入,效率为 75%-100%。利用定制的内源性 CRISPR3 系统靶向 eps 基因簇的六个基因,我们获得了六个单基因敲除突变体,效率为 29%-80%,并证明了 epsA、epsE 和 epsG 是影响嗜热链球菌 LMD-9 中胞外多糖生物合成的关键基因。总之,重新利用天然的 II-A 型 CRISPR-Cas9 可以作为嗜热链球菌精确基因组工程的工具包,用于生物技术应用。