Gene drives have enormous potential for the control of insect populations of medical and agricultural relevance. By preferentially biasing their own inheritance, gene drives can rapidly introduce genetic traits even if these confer a negative fitness effect on the population. We have recently developed gene drives based on CRISPR nuclease constructs that are designed to disrupt key genes essential for female fertility in the malaria mosquito. The construct copies itself and the associated genetic disruption from one homologous chromosome to another during gamete formation, a process called homing that ensures the majority of offspring inherit the drive. Such drives have the potential to cause long-lasting, sustainable population suppression...
The last century has witnessed the introduction, establishment and expansion of mosquito-borne disea...
BACKGROUND: Gene drives based on CRISPR-Cas9 technology are increasingly being considered as tools f...
Gene drives for mosquito population replacement are promising tools for malaria control. However, th...
Gene drives have enormous potential for the control of insect populations of medical and agricultura...
Gene drives have enormous potential for the control of insect populations of medical and agricultura...
Abstract CRISPR-based genes drives bias their own inheritance and can be used to modify entire popul...
Genetic drive systems have the potential to modify entire insect populations in a few years through ...
CRISPR-based homing gene drives can be designed to disrupt essential genes whilst biasing their own ...
Gene drive systems that enable super-Mendelian inheritance of a transgene have the potential to modi...
Gene drive systems that enable super-Mendelian inheritance of a transgene have the potential to modi...
CRISPR-based homing gene drives can be designed to disrupt essential genes whilst biasing their own ...
Gene drive systems that enable super-Mendelian inheritance of a transgene have the potential to modi...
CRISPR-based gene drives offer promising means to reduce the burden of pests and vector-borne diseas...
CRISPR-based gene-drives targeting the gene doublesex in the malaria vector Anopheles gambiae effect...
CRISPR-based gene-drives targeting the gene doublesex in the malaria vector Anopheles gambiae effect...
The last century has witnessed the introduction, establishment and expansion of mosquito-borne disea...
BACKGROUND: Gene drives based on CRISPR-Cas9 technology are increasingly being considered as tools f...
Gene drives for mosquito population replacement are promising tools for malaria control. However, th...
Gene drives have enormous potential for the control of insect populations of medical and agricultura...
Gene drives have enormous potential for the control of insect populations of medical and agricultura...
Abstract CRISPR-based genes drives bias their own inheritance and can be used to modify entire popul...
Genetic drive systems have the potential to modify entire insect populations in a few years through ...
CRISPR-based homing gene drives can be designed to disrupt essential genes whilst biasing their own ...
Gene drive systems that enable super-Mendelian inheritance of a transgene have the potential to modi...
Gene drive systems that enable super-Mendelian inheritance of a transgene have the potential to modi...
CRISPR-based homing gene drives can be designed to disrupt essential genes whilst biasing their own ...
Gene drive systems that enable super-Mendelian inheritance of a transgene have the potential to modi...
CRISPR-based gene drives offer promising means to reduce the burden of pests and vector-borne diseas...
CRISPR-based gene-drives targeting the gene doublesex in the malaria vector Anopheles gambiae effect...
CRISPR-based gene-drives targeting the gene doublesex in the malaria vector Anopheles gambiae effect...
The last century has witnessed the introduction, establishment and expansion of mosquito-borne disea...
BACKGROUND: Gene drives based on CRISPR-Cas9 technology are increasingly being considered as tools f...
Gene drives for mosquito population replacement are promising tools for malaria control. However, th...