The elegant mechanisms by which naturally occurring selfish genetic elements, such as transposable elements, meiotic drive genes, homing endonuclease genes and Wolbachia, spread at the expense of their hosts provide some of the most fascinating and remarkable subjects in evolutionary genetics. These elements also have enormous untapped potential to be used in the control of some of the world's most devastating diseases. Effective gene drive systems for spreading genes that can block the transmission of insect-borne pathogens are much needed. Here we explore the potential of natural gene drive systems and discuss the artificial constructs that could be envisaged for this purpose
Making discrete and precise genetic changes to wild populations has been proposed as a means of addr...
Gene drives are selfish genetic elements that can be re-designed to invade a population and they hol...
Scientists are rapidly developing synthetic gene drive elements intended for release into natural po...
The elegant mechanisms by which naturally occurring selfish genetic elements, such as transposable e...
The elegant mechanisms by which naturally occurring selfish genetic elements, such as transposable e...
Drive is a process of accelerated inheritance from one generation to the next that allows some genes...
Insects play important roles as predators, prey, pollinators, recyclers, hosts, parasitoids, and sou...
Gene drive systems are selfish genetic elements capable of spreading into a population despite a fit...
Drive is a process of accelerated inheritance from one generation to the next that allows some genes...
Gene-drive endonucleases (GDEs) are genes that can spread through a population through a non-Mendeli...
Genetic methods of manipulating or eradicating disease vector populations have long been discussed a...
Gene drive is a naturally occurring phenomenon in which selfish genetic elements manipulate gametoge...
Gene drives are selfish genetic elements that are transmitted to progeny at super-Mendelian (>50%...
Abstract Driving endonuclease genes (DEGs) spread through a population by a non-Mendelian mechanism....
Synthetic gene drive systems possess enormous potential to replace, alter, or suppress wild populati...
Making discrete and precise genetic changes to wild populations has been proposed as a means of addr...
Gene drives are selfish genetic elements that can be re-designed to invade a population and they hol...
Scientists are rapidly developing synthetic gene drive elements intended for release into natural po...
The elegant mechanisms by which naturally occurring selfish genetic elements, such as transposable e...
The elegant mechanisms by which naturally occurring selfish genetic elements, such as transposable e...
Drive is a process of accelerated inheritance from one generation to the next that allows some genes...
Insects play important roles as predators, prey, pollinators, recyclers, hosts, parasitoids, and sou...
Gene drive systems are selfish genetic elements capable of spreading into a population despite a fit...
Drive is a process of accelerated inheritance from one generation to the next that allows some genes...
Gene-drive endonucleases (GDEs) are genes that can spread through a population through a non-Mendeli...
Genetic methods of manipulating or eradicating disease vector populations have long been discussed a...
Gene drive is a naturally occurring phenomenon in which selfish genetic elements manipulate gametoge...
Gene drives are selfish genetic elements that are transmitted to progeny at super-Mendelian (>50%...
Abstract Driving endonuclease genes (DEGs) spread through a population by a non-Mendelian mechanism....
Synthetic gene drive systems possess enormous potential to replace, alter, or suppress wild populati...
Making discrete and precise genetic changes to wild populations has been proposed as a means of addr...
Gene drives are selfish genetic elements that can be re-designed to invade a population and they hol...
Scientists are rapidly developing synthetic gene drive elements intended for release into natural po...