Selfish genes are DNA elements that increase their rate of genetic transmission at the expense of other genes in the genome and can therefore quickly spread within a population. It has been suggested that selfish elements could be exploited to modify the genome of entire populations for medical and ecological applications. Here we report that transcription activator-like effector nuclease (TALEN) and zinc finger nuclease (ZFN) can be engineered into site-specific synthetic selfish elements (SSEs) and demonstrate their transmission of up to 70% in the Drosophila germline. We show here that SSEs can spread via DNA break-induced homologous recombination, a process known as 'homing' similar to that observed for homing endonuclease genes (HEGs),...
<div><p>The homing endonuclease gene (HEG) drive system, a promising genetic approach for controllin...
Genetic methods of manipulating or eradicating disease vector populations have long been discussed a...
Modifying the genomes of many organisms is becoming as easy as manipulating DNA in test tubes, which...
Selfish genes are DNA elements that increase their rate of genetic transmission at the expense of ot...
Selfish genes are DNA elements that increase their rate of genetic transmission at the expense of ot...
Making discrete and precise genetic changes to wild populations has been proposed as a means of addr...
P-element vectors are commonly used to make transgenic Drosophila and generally insert in the genome...
We report very high gene targeting frequencies in Drosophila by direct embryo injection of mRNAs enc...
A central challenge in investigating biological phenomena is the development of techniques to modify...
<div><p>P-element vectors are commonly used to make transgenic Drosophila and generally insert in th...
Drosophila is a well-established genetic model organism: thousands of point mutations, deficiencies ...
The homing endonuclease gene (HEG) drive system, a promising genetic approach for controlling arthro...
Site-specific selfish genes exploit host functions to copy themselves into a defined target DNA sequ...
Technology development has always been one of the forces driving breakthroughs in biomedical researc...
Drosophila melanogaster has been a classic model organism for the studies of genetics. More than 15,...
<div><p>The homing endonuclease gene (HEG) drive system, a promising genetic approach for controllin...
Genetic methods of manipulating or eradicating disease vector populations have long been discussed a...
Modifying the genomes of many organisms is becoming as easy as manipulating DNA in test tubes, which...
Selfish genes are DNA elements that increase their rate of genetic transmission at the expense of ot...
Selfish genes are DNA elements that increase their rate of genetic transmission at the expense of ot...
Making discrete and precise genetic changes to wild populations has been proposed as a means of addr...
P-element vectors are commonly used to make transgenic Drosophila and generally insert in the genome...
We report very high gene targeting frequencies in Drosophila by direct embryo injection of mRNAs enc...
A central challenge in investigating biological phenomena is the development of techniques to modify...
<div><p>P-element vectors are commonly used to make transgenic Drosophila and generally insert in th...
Drosophila is a well-established genetic model organism: thousands of point mutations, deficiencies ...
The homing endonuclease gene (HEG) drive system, a promising genetic approach for controlling arthro...
Site-specific selfish genes exploit host functions to copy themselves into a defined target DNA sequ...
Technology development has always been one of the forces driving breakthroughs in biomedical researc...
Drosophila melanogaster has been a classic model organism for the studies of genetics. More than 15,...
<div><p>The homing endonuclease gene (HEG) drive system, a promising genetic approach for controllin...
Genetic methods of manipulating or eradicating disease vector populations have long been discussed a...
Modifying the genomes of many organisms is becoming as easy as manipulating DNA in test tubes, which...