© 2020 The Author(s). Background: Transposable elements (TEs) are a diverse group of self-mobilizing DNA elements. Transposition has been exploited as a powerful tool for molecular biology and genomics. However, transposition is sometimes limited because of auto-regulatory mechanisms that presumably allow them to cohabit within their hosts without causing excessive genomic damage. The papillation assay provides a powerful visual screen for hyperactive transposases. Transposition is revealed by the activation of a promoter-less lacZ gene when the transposon integrates into a non-essential gene on the host chromosome. Transposition events are detected as small blue speckles, or papillae, on the white background of the main Escherichia coli co...
Transposons are invaluable biological tools for the genetic manipulation of microorganisms. ISY100 f...
The evolutionary role of transposable elements (TEs) is still highly controversial. Two key paramete...
Homology-directed genome engineering is limited by transgene size. Although DNA transposons are more...
DNA transposons are mobile genetic elements that relocate between genomic loci. This relocation is t...
DNA transposons are mobile genetic elements that relocate between genomic loci. This relocation is t...
The development of transposon-based genome manipulation tools can benefit greatly from understanding...
The development of transposon-based genome manipulation tools can benefit greatly from understanding...
Cut-and-paste transposons are important tools for mutagenesis, gene-delivery and DNA sequencing appl...
Hsmar1 is a member of the Tc1-mariner superfamily of DNA transposons. These elements mobilize within...
Cut-and-paste transposons are important tools for mutagenesis, gene-delivery and DNA sequencing appl...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Transposons are integrally tied to the spread of antibiotic resistance among bacterial species, and ...
New applications for transposons in vertebrate genetics have spurred efforts to develop hyperactive ...
Cut-and-paste DNA transposons of the mariner/Tc1 family are useful tools for genome engineering and ...
Escherichia coli is one of the most studied model organisms in biology. Even with decades of researc...
Transposons are invaluable biological tools for the genetic manipulation of microorganisms. ISY100 f...
The evolutionary role of transposable elements (TEs) is still highly controversial. Two key paramete...
Homology-directed genome engineering is limited by transgene size. Although DNA transposons are more...
DNA transposons are mobile genetic elements that relocate between genomic loci. This relocation is t...
DNA transposons are mobile genetic elements that relocate between genomic loci. This relocation is t...
The development of transposon-based genome manipulation tools can benefit greatly from understanding...
The development of transposon-based genome manipulation tools can benefit greatly from understanding...
Cut-and-paste transposons are important tools for mutagenesis, gene-delivery and DNA sequencing appl...
Hsmar1 is a member of the Tc1-mariner superfamily of DNA transposons. These elements mobilize within...
Cut-and-paste transposons are important tools for mutagenesis, gene-delivery and DNA sequencing appl...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Transposons are integrally tied to the spread of antibiotic resistance among bacterial species, and ...
New applications for transposons in vertebrate genetics have spurred efforts to develop hyperactive ...
Cut-and-paste DNA transposons of the mariner/Tc1 family are useful tools for genome engineering and ...
Escherichia coli is one of the most studied model organisms in biology. Even with decades of researc...
Transposons are invaluable biological tools for the genetic manipulation of microorganisms. ISY100 f...
The evolutionary role of transposable elements (TEs) is still highly controversial. Two key paramete...
Homology-directed genome engineering is limited by transgene size. Although DNA transposons are more...