Robust counterselection and advanced λRed recombineering enable markerless chromosomal integration of large heterologous constructs

Author:

Bubnov Dmitrii M12ORCID,Yuzbashev Tigran V3,Khozov Andrey A124,Melkina Olga E25,Vybornaya Tatiana V16,Stan Guy-Bart3,Sineoky Sergey P12

Affiliation:

1. Bioresource Center Russian National Collection of Industrial Microorganisms (BRC VKPM), State Research Institute for Genetics and Selection of Industrial Microorganisms of National Research Center ‘Kurchatov Institute’ (NRC ‘Kurchatov Institute’ – GosNIIgenetika) , 1-st Dorozhny pr., 1, Moscow 117545, Russia

2. Kurchatov Complex of Genetic Research, NRC ‘Kurchatov Institute’, Kurchatov Square , 1, Moscow 123098, Russia

3. Department of Bioengineering and Imperial College Centre for Synthetic Biology, Imperial College London , London SW7 2AZ, UK

4. Department of Microbiology, Faculty of Biology, Lomonosov Moscow State University, Lenin's Hills  1-12, Moscow 119234, Russia

5. Laboratory of Bacterial Genetics, NRC ‘Kurchatov Institute’ – GosNIIgenetika, 1-st Dorozhny pr. , 1, Moscow 117545, Russia

6. Kurchatov Genomic Center, NRC ‘Kurchatov Institute’ - GosNIIgenetika, 1-st Dorozhny pr. , 1, Moscow 117545, Russia

Abstract

Abstract Despite advances in bacterial genome engineering, delivery of large synthetic constructs remains challenging in practice. In this study, we propose a straightforward and robust approach for the markerless integration of DNA fragments encoding whole metabolic pathways into the genome. This approach relies on the replacement of a counterselection marker with cargo DNA cassettes via λRed recombineering. We employed a counterselection strategy involving a genetic circuit based on the CI repressor of λ phage. Our design ensures elimination of most spontaneous mutants, and thus provides a counterselection stringency close to the maximum possible. We improved the efficiency of integrating long PCR-generated cassettes by exploiting the Ocr antirestriction function of T7 phage, which completely prevents degradation of unmethylated DNA by restriction endonucleases in wild-type bacteria. The employment of highly restrictive counterselection and ocr-assisted λRed recombineering allowed markerless integration of operon-sized cassettes into arbitrary genomic loci of four enterobacterial species with an efficiency of 50–100%. In the case of Escherichia coli, our strategy ensures simple combination of markerless mutations in a single strain via P1 transduction. Overall, the proposed approach can serve as a general tool for synthetic biology and metabolic engineering in a range of bacterial hosts.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

Oxford University Press (OUP)

Subject

Genetics

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