Modifying the genomes of many organisms is becoming as easy as manipulating DNA in test tubes, which is made possible by two recently developed techniques based on either the customizable DNA binding protein, TALEN, or the CRISPR/Cas9 system. Here, we describe a series of efficient applications derived from these two technologies, in combination with various homologous donor DNA plasmids, to manipulate the Drosophila genome: (1) to precisely generate genomic deletions; (2) to make genomic replacement of a DNA fragment at single nucleotide resolution; and (3) to generate precise insertions to tag target proteins for tracing their endogenous expressions. For more convenient genomic manipulations, we established an easy-to-screen platform by k...
Here, we present a simple and highly efficient method for generating and detecting mutations ofany g...
Adoption of a streamlined version of the bacterial clustered regular interspersed short palindromic ...
AbstractRecent advances in our ability to design DNA binding factors with specificity for desired se...
Modifying the genomes of many organisms is becoming as easy as manipulating DNA in test tubes, which...
Technology development has always been one of the forces driving breakthroughs in biomedical researc...
Drosophila is a well-established genetic model organism: thousands of point mutations, deficiencies ...
Drosophila is a well-established genetic model organism: thousands of point mutations, deficiencies ...
In reverse genetics, a gene’s function is elucidated through targeted modifications in the coding re...
Summary We have applied the CRISPR/Cas9 system to Drosophila S2 cells to generate targeted genetic m...
Adoption of a streamlined version of the bacterial clustered regular interspersed short palindromic ...
Here, we present a simple and highly efficient method for generating and detecting mutations of any ...
Here, we present a simple and highly efficient method for generating and detecting mutations ofany g...
SummaryHere, we present a simple and highly efficient method for generating and detecting mutations ...
The development of clustered, regularly interspaced, short palindromic repeats (CRISPR)/CRISPR-assoc...
Here, we present a simple and highly efficient method for generating and detecting mutations of any ...
Here, we present a simple and highly efficient method for generating and detecting mutations ofany g...
Adoption of a streamlined version of the bacterial clustered regular interspersed short palindromic ...
AbstractRecent advances in our ability to design DNA binding factors with specificity for desired se...
Modifying the genomes of many organisms is becoming as easy as manipulating DNA in test tubes, which...
Technology development has always been one of the forces driving breakthroughs in biomedical researc...
Drosophila is a well-established genetic model organism: thousands of point mutations, deficiencies ...
Drosophila is a well-established genetic model organism: thousands of point mutations, deficiencies ...
In reverse genetics, a gene’s function is elucidated through targeted modifications in the coding re...
Summary We have applied the CRISPR/Cas9 system to Drosophila S2 cells to generate targeted genetic m...
Adoption of a streamlined version of the bacterial clustered regular interspersed short palindromic ...
Here, we present a simple and highly efficient method for generating and detecting mutations of any ...
Here, we present a simple and highly efficient method for generating and detecting mutations ofany g...
SummaryHere, we present a simple and highly efficient method for generating and detecting mutations ...
The development of clustered, regularly interspaced, short palindromic repeats (CRISPR)/CRISPR-assoc...
Here, we present a simple and highly efficient method for generating and detecting mutations of any ...
Here, we present a simple and highly efficient method for generating and detecting mutations ofany g...
Adoption of a streamlined version of the bacterial clustered regular interspersed short palindromic ...
AbstractRecent advances in our ability to design DNA binding factors with specificity for desired se...