The Key Research Project of “13th 5-year Plan” of China (No. 2016YFD0401400), National Natural Science Foundation of China Youth Fund (No. 31401674), Postgraduate Research & Practice Innovation Program of Jiangsu Province (No. SJCX18_0616), Top-notch Academic Programs Project of Jiangsu Higher Education Institutions, Science and Technology Project of Jiangsu (No. BE2016628), Cyan Engineering, Jiangsu Fishery Science and Technology Project (No. Y2018-26), Wuxi Science and Technology Development Fund Project (No. CLE02N1713).
Few tools of gene editing have been developed in Bacillus licheniformis at present. In order to enrich the tools, an FLP/FRT gene editing system that can repeatedly use a single selectable marker was constructed in Bacillus licheniformis, and the system was verified by knocking out an alpha amylase gene (amyL), an protease gene (aprE) and knocking in an exogenous Vitreoscilla hemoglobin gene (vgb). First, knock-out plasmids pNZTT-AFKF of amyL and pNZTT-EFKF of aprE were constructed using thermosensitive plasmid pNZT1 as a carrier. The two knock-out plasmids contained respective homology arms, resistance genes and FRT sites. Then the knock-out plasmids were transformed into Bacillus licheniformis and the target genes were replaced by respective deletion cassette via twice homologous exchange. Finally, an expression plasmid containing FLP recombinase reading frane was introduced and mediated the excision of resistance marker. In order to expand the practicability of the system, knock-in plasmid pNZTK-PFTF-vgb was constructed, with which knock-in of vgb at pflB site was carried out successfully. The results showed that amyL and aprE were successfully knocked out and the marker kanamycin cassette exactly excised. The activities of amylase and protease of deletion mutants were reduced by 95.3% and 80.4% respectively. vgb was successfully knocked in at pflB site and the marker tetracycline cassette excised. The expression of integrated vgb was verified via real-time PCR. It is the first time to construct an FLP/FRT system for gene editing in Bacillus licheniformis, which could provide an effective technical means for genetic modification.
李宗文,李由然,顾正华,丁重阳,张梁,徐沙,石贵阳. 地衣芽胞杆菌FLP/FRT基因编辑系统的构建及验证[J]. Chinese Journal of Biotechnology, 2019, 35(3): 458-471
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