4.6 Article

The pGinger Family of Expression Plasmids

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MICROBIOLOGY SPECTRUM
卷 11, 期 3, 页码 -

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AMER SOC MICROBIOLOGY
DOI: 10.1128/spectrum.00373-23

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molecular genetics; plasmid; synthetic biology

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The pGinger suite of expression plasmids consists of 43 plasmids that allow precise constitutive and inducible gene expression in various Gram-negative bacteria. These plasmids include 16 synthetic constitutive promoters upstream of red fluorescent protein (RFP), with a wide range of hosts and antibiotic resistance markers. The family also contains seven inducible systems controlling RFP expression, with variants that utilize different origins and selection markers. Relevant data have been collected in Escherichia coli and Pseudomonas putida, and all pGinger vectors are available through the JBEI Public Registry.
The pGinger suite of expression plasmids comprises 43 plasmids that will enable precise constitutive and inducible gene expression in a wide range of Gram-negative bacterial species. Constitutive vectors are composed of 16 synthetic constitutive promoters upstream of red fluorescent protein (RFP), with a broad-host-range BBR1 origin and a kanamycin resistance marker. The family also has seven inducible systems (Jungle Express, Psal/NahR, Pm/XylS, Prha/RhaS, LacO1/LacI, LacUV5/LacI, and Ptet/TetR) controlling RFP expression on BBR1/kanamycin plasmid backbones. For four of these inducible systems (Jungle Express, Psal/NahR, LacO1/LacI, and Ptet/TetR), we created variants that utilize the RK2 origin and spectinomycin or gentamicin selection. Relevant RFP expression and growth data have been collected in the model bacterium Escherichia coli as well as Pseudomonas putida. All pGinger vectors are available via the Joint BioEnergy Institute (JBEI) Public Registry.IMPORTANCE Metabolic engineering and synthetic biology are predicated on the precise control of gene expression. As synthetic biology expands beyond model organisms, more tools will be required that function robustly in a wide range of bacterial hosts. The pGinger family of plasmids constitutes 43 plasmids that will enable both constitutive and inducible gene expression in a wide range of nonmodel Proteobacteria. Metabolic engineering and synthetic biology are predicated on the precise control of gene expression. As synthetic biology expands beyond model organisms, more tools will be required that function robustly in a wide range of bacterial hosts. The pGinger family of plasmids constitutes 43 plasmids that will enable both constitutive and inducible gene expression in a wide range of nonmodel Proteobacteria.

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