CRISPR-based gene drives offer promising means to reduce the burden of pests and vector-borne diseases. These techniques consist of releasing genetically modified organisms carrying CRISPR-Cas nucleases designed to bias their inheritance and rapidly propagate desired modifications. Gene drives can be intended to reduce reproductive capacity of harmful insects or spread anti-pathogen effectors through wild populations, even when these confer fitness disadvantages. Technologies capable of halting the spread of gene drives may prove highly valuable in controlling, counteracting, and even reverting their effect on individual organisms as well as entire populations. Here we show engineering and testing of a genetic approach, based on the germlin...
Genetic engineering technologies can be used both to create transgenic mosquitoes carrying antipatho...
Gene drives for mosquito population modification are novel tools for malaria control. Strategies to ...
CRISPR-based gene-drives targeting the gene doublesex in the malaria vector Anopheles gambiae effect...
CRISPR-based gene drives offer promising means to reduce the burden of pests and vector-borne diseas...
CRISPR-based gene drives offer promising means to reduce the burden of pests and vector-borne diseas...
Abstract CRISPR-based genes drives bias their own inheritance and can be used to modify entire popul...
Gene drives have enormous potential for the control of insect populations of medical and agricultura...
Gene drive systems that enable super-Mendelian inheritance of a transgene have the potential to modi...
Gene drives have enormous potential for the control of insect populations of medical and agricultura...
Gene drives are selfish genetic elements that can be re-designed to invade a population and they hol...
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...
Aedes aegypti is the principal mosquito vector for many arboviruses that increasingly infect million...
While efforts to control malaria with available tools have stagnated, and arbovirus outbreaks persis...
Aedes aegypti, the yellow fever mosquito, is the main vector of several major pathogens including ye...
Genetic engineering technologies can be used both to create transgenic mosquitoes carrying antipatho...
Gene drives for mosquito population modification are novel tools for malaria control. Strategies to ...
CRISPR-based gene-drives targeting the gene doublesex in the malaria vector Anopheles gambiae effect...
CRISPR-based gene drives offer promising means to reduce the burden of pests and vector-borne diseas...
CRISPR-based gene drives offer promising means to reduce the burden of pests and vector-borne diseas...
Abstract CRISPR-based genes drives bias their own inheritance and can be used to modify entire popul...
Gene drives have enormous potential for the control of insect populations of medical and agricultura...
Gene drive systems that enable super-Mendelian inheritance of a transgene have the potential to modi...
Gene drives have enormous potential for the control of insect populations of medical and agricultura...
Gene drives are selfish genetic elements that can be re-designed to invade a population and they hol...
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...
Aedes aegypti is the principal mosquito vector for many arboviruses that increasingly infect million...
While efforts to control malaria with available tools have stagnated, and arbovirus outbreaks persis...
Aedes aegypti, the yellow fever mosquito, is the main vector of several major pathogens including ye...
Genetic engineering technologies can be used both to create transgenic mosquitoes carrying antipatho...
Gene drives for mosquito population modification are novel tools for malaria control. Strategies to ...
CRISPR-based gene-drives targeting the gene doublesex in the malaria vector Anopheles gambiae effect...