The bacterium Escherichia coli has been well-justified as an effective workhorse for industrial applications. In this study, we developed a toolkit for flexible genome engineering of this microorganism, including site-specific insertion of heterologous genes and inactivation of endogenous genes, such that bacterial hosts can be effectively engineered for biomanufacturing. We first constructed a base strain by genomic implementation of the cas9 and λRed recombineering genes. Then, we constructed plasmids for expressing gRNA, DNA cargo, and the Vibrio cholerae Tn6677 transposon and type I-F CRISPR-Cas machinery. Genomic insertion of a DNA cargo up to 5.5 kb was conducted using a transposon-associated CRISPR-Cas system, whereas gene inactivati...
Our goal is to construct an improved Escherichia coli to serve both as a better model organism and a...
Application of state-of-the-art genome editing tools like CRISPR-Cas9 drastically increase the numbe...
Gene-drive systems in diploid organisms bias the inheritance of one allele over another. CRISPR-base...
Bacterial species and communities play foundational roles in human health and therapeutics, in vital...
Multiplex genome engineering is a standalone recombineering tool for large-scale programming and acc...
The past decade has been a golden age for microbiology, marked by the discovery of an unprecedented ...
Multiplex genome engineering is a standalone recombineering tool for large-scale programming and acc...
The past decade has been a golden age for microbiology, marked by the discovery of an unprecedented ...
The past decade has been a golden age for microbiology, marked by the discovery of an unprecedented ...
Various methods for editing specific sites in the Escherichia coli chromosome are available, and gen...
Derived from the bacterial adaptive immune system, CRISPR technology has revolutionized conventional...
Various methods for editing specific sites in the Escherichia coli chromosome are available, and gen...
Microbial organisms are key drivers in processes related to human health, industrial biotechnology, ...
Microbial organisms are key drivers in processes related to human health, industrial biotechnology, ...
Re-programming microorganisms to modify their existing functions and/or to bestow bacteria with enti...
Our goal is to construct an improved Escherichia coli to serve both as a better model organism and a...
Application of state-of-the-art genome editing tools like CRISPR-Cas9 drastically increase the numbe...
Gene-drive systems in diploid organisms bias the inheritance of one allele over another. CRISPR-base...
Bacterial species and communities play foundational roles in human health and therapeutics, in vital...
Multiplex genome engineering is a standalone recombineering tool for large-scale programming and acc...
The past decade has been a golden age for microbiology, marked by the discovery of an unprecedented ...
Multiplex genome engineering is a standalone recombineering tool for large-scale programming and acc...
The past decade has been a golden age for microbiology, marked by the discovery of an unprecedented ...
The past decade has been a golden age for microbiology, marked by the discovery of an unprecedented ...
Various methods for editing specific sites in the Escherichia coli chromosome are available, and gen...
Derived from the bacterial adaptive immune system, CRISPR technology has revolutionized conventional...
Various methods for editing specific sites in the Escherichia coli chromosome are available, and gen...
Microbial organisms are key drivers in processes related to human health, industrial biotechnology, ...
Microbial organisms are key drivers in processes related to human health, industrial biotechnology, ...
Re-programming microorganisms to modify their existing functions and/or to bestow bacteria with enti...
Our goal is to construct an improved Escherichia coli to serve both as a better model organism and a...
Application of state-of-the-art genome editing tools like CRISPR-Cas9 drastically increase the numbe...
Gene-drive systems in diploid organisms bias the inheritance of one allele over another. CRISPR-base...