State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, PR China.
State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, PR China; Shanghai Engineering Research Center of Maricultured Animal Vaccines, Shanghai, PR China.
Microbiol Res. 2019 Nov;228:126306. doi: 10.1016/j.micres.2019.126306. Epub 2019 Aug 8.
The mariner transposon family of Himar1 has been widely used for the random mutagenesis of bacteria to generate single insertions into the chromosome. Here, a versatile toolbox of mariner transposon derivatives was generated and applied to the functional genomics investigation of fish pathogen Edwardsiella piscicida. In this study, we combined the merits of the random mutagenesis of mariner transposon and common efficient reporter marker genes or regulatory elements, mCherry, gfp, luxAB, lacZ, sacBR, and P and antibiotic resistance cassettes to construct a series of derivative transposon vectors, pMmch, pMKGR, pMCGR, pMXKGR, pMLKGR, pMSGR, and pMPR, based on the initial transposon pMar2xT7. The function and effectiveness of the modified transposons were verified by introducing them into E. piscicida EIB202. Based on the toolbox, a transposon insertion mutant library containing approximately 3.0 × 10 distinct mutants was constructed to explore the upstream regulators of esrB, the master regulator of the type III and type VI secretion systems (T3/T6SS) in E. piscicida. Following analysis by Con-ARTIST, ETAE_3474, annotated as fabR and involved in fatty acid metabolism, was screened out and identified as a novel regulator mediating T3SS and T6SS expression. In addition, the fabR mutants displayed critical virulence attenuation in turbot. Due to the broad-range host compatibility of mariner transposons, the newly built transposon toolbox can be applied for functional genomics studies in various bacteria.
Himar1 的水手转座子家族已被广泛用于对细菌进行随机诱变,以在染色体上产生单个插入。在这里,生成了一个多功能的水手转座子衍生物工具箱,并将其应用于鱼类病原体爱德华氏菌的功能基因组学研究。在这项研究中,我们结合了水手转座子随机诱变的优点和常见的高效报告标记基因或调控元件,如 mCherry、gfp、luxAB、lacZ、sacBR 和 P 以及抗生素抗性盒,构建了一系列衍生转座子载体,如基于初始转座子 pMar2xT7 的 pMmch、pMKGR、pMCGR、pMXKGR、pMLKGR、pMSGR 和 pMPR。通过将这些修饰后的转座子引入爱德华氏菌 EIB202 中,验证了它们的功能和有效性。基于该工具箱,构建了一个包含约 3.0×10 个独特突变体的转座子插入突变体文库,以探索爱德华氏菌中 III 型和 VI 型分泌系统(T3/T6SS)的主调控因子 esrB 的上游调控因子。通过 Con-ARTIST 分析,筛选出并鉴定出注释为参与脂肪酸代谢的 fabR 基因作为一个新的调控因子,介导 T3SS 和 T6SS 的表达。此外,fabR 突变体在大菱鲆中表现出关键的毒力衰减。由于水手转座子的广谱宿主相容性,新构建的转座子工具箱可用于各种细菌的功能基因组学研究。