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Use of the counter selectable marker PheS* for genome engineering in  Staphylococcus aureus
Use of the counter selectable marker PheS* for genome engineering in Staphylococcus aureus

Development of a novel selection/counter-selection system for chromosomal  gene integrations and deletions in lactic acid bacteria | BMC Molecular  Biology | Full Text
Development of a novel selection/counter-selection system for chromosomal gene integrations and deletions in lactic acid bacteria | BMC Molecular Biology | Full Text

Efficient and Precise Genome Editing in Shewanella with Recombineering and  CRISPR/Cas9-Mediated Counter-Selection | ACS Synthetic Biology
Efficient and Precise Genome Editing in Shewanella with Recombineering and CRISPR/Cas9-Mediated Counter-Selection | ACS Synthetic Biology

CH391L/S14/SelectableCounterselectable - SynBioCyc
CH391L/S14/SelectableCounterselectable - SynBioCyc

CH391L/S12/CounterSelection - OpenWetWare
CH391L/S12/CounterSelection - OpenWetWare

Frontiers | pheSAG Based Rapid and Efficient Markerless Mutagenesis in  Methylotuvimicrobium
Frontiers | pheSAG Based Rapid and Efficient Markerless Mutagenesis in Methylotuvimicrobium

Counter-selectable marker for bacterial-based interaction trap systems |  BioTechniques
Counter-selectable marker for bacterial-based interaction trap systems | BioTechniques

Frontiers | Recent Advances in Genetic Tools for Acinetobacter baumannii
Frontiers | Recent Advances in Genetic Tools for Acinetobacter baumannii

Recycling of a selectable marker with a self-excisable plasmid in Pichia  pastoris | Scientific Reports
Recycling of a selectable marker with a self-excisable plasmid in Pichia pastoris | Scientific Reports

Counter-selectable marker for bacterial-based interaction trap systems |  BioTechniques
Counter-selectable marker for bacterial-based interaction trap systems | BioTechniques

CH391L/S12/CounterSelection - OpenWetWare
CH391L/S12/CounterSelection - OpenWetWare

High-efficiency counterselection recombineering for site-directed  mutagenesis in bacterial artificial chromosomes | Nature Methods
High-efficiency counterselection recombineering for site-directed mutagenesis in bacterial artificial chromosomes | Nature Methods

A new strategy for seamless gene editing and marker recycling in  Saccharomyces cerevisiae using lethal effect of Cwp1 - Hu - 2019 -  MicrobiologyOpen - Wiley Online Library
A new strategy for seamless gene editing and marker recycling in Saccharomyces cerevisiae using lethal effect of Cwp1 - Hu - 2019 - MicrobiologyOpen - Wiley Online Library

The homogeneity problem and the solution using a counter selection marker,  sacB.
The homogeneity problem and the solution using a counter selection marker, sacB.

Schematic presentation of the upp counterselection system for P. putida...  | Download Scientific Diagram
Schematic presentation of the upp counterselection system for P. putida... | Download Scientific Diagram

Liquid-Based Iterative Recombineering Method Tolerant to Counter-Selection  Escapes | PLOS ONE
Liquid-Based Iterative Recombineering Method Tolerant to Counter-Selection Escapes | PLOS ONE

A new strategy for seamless gene editing and marker recycling in  Saccharomyces cerevisiae using lethal effect of Cwp1 - Hu - 2019 -  MicrobiologyOpen - Wiley Online Library
A new strategy for seamless gene editing and marker recycling in Saccharomyces cerevisiae using lethal effect of Cwp1 - Hu - 2019 - MicrobiologyOpen - Wiley Online Library

Bacterial genetics: past achievements, present state of the field, and  future challenges
Bacterial genetics: past achievements, present state of the field, and future challenges

Plasmids 101: Positive and Negative Selection for Plasmid Cloning
Plasmids 101: Positive and Negative Selection for Plasmid Cloning

Efficient Bacterial Genome Engineering throughout the Central Dogma Using  the Dual-Selection Marker tetAOPT | ACS Synthetic Biology
Efficient Bacterial Genome Engineering throughout the Central Dogma Using the Dual-Selection Marker tetAOPT | ACS Synthetic Biology

Plasmids 101: Knockout/Knock-In Plasmids
Plasmids 101: Knockout/Knock-In Plasmids

Principle of the counterselection system for targeted gene deletion in... |  Download Scientific Diagram
Principle of the counterselection system for targeted gene deletion in... | Download Scientific Diagram

Split selectable markers | Nature Communications
Split selectable markers | Nature Communications

Multiplexed drug-based selection and counterselection genetic manipulations  in Drosophila
Multiplexed drug-based selection and counterselection genetic manipulations in Drosophila

Use of the counter selectable marker PheS* for genome engineering in  Staphylococcus aureus
Use of the counter selectable marker PheS* for genome engineering in Staphylococcus aureus

Improving the selection efficiency of the counter-selection marker pheS*  for the genetic engineering of Bacillus amyloliquefaciens - ScienceDirect
Improving the selection efficiency of the counter-selection marker pheS* for the genetic engineering of Bacillus amyloliquefaciens - ScienceDirect

Figure 1 from Counter-selection facilitated plasmid construction by  homologous recombination in Saccharomyces cerevisiae. | Semantic Scholar
Figure 1 from Counter-selection facilitated plasmid construction by homologous recombination in Saccharomyces cerevisiae. | Semantic Scholar