Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease or survive under specific environmental conditions using gene drive provides a self-perpetuating method of disease prevention. Mechanisms that require the gene drive element and linked cargo to exceed a high threshold frequency in order for spread to occur are attractive because they offer several points of control: they bring about local, but not global population replacement; and transgenes can be eliminated by reintroducing wildtypes into the population so as to drive the frequency of transgenes below the threshold frequency required for drive. Reciprocal chromosome translocations were proposed as a tool for bringing about high threshold ...
<div><p>Gene drive systems provide novel opportunities for insect population suppression by driving ...
<div><p>The idea of introducing genetic modifications into wild populations of insects to stop them ...
BACKGROUND:Replacement of wild-type mosquito populations with genetically modified versions is being...
Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease...
Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease...
SummaryReplacement of wild insect populations with genetically modified individuals unable to transm...
[[abstract]]Advances in insect transgenesis and our knowledge of insect physiology and genomics are ...
Replacement of wild insect populations with genetically modified individuals unable to transmit dise...
[[abstract]]Mosquito population replacement requires gene drive mechanisms in order to spread lined ...
Insects play important roles as predators, prey, pollinators, recyclers, hosts, parasitoids, and sou...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
Engineered reproductive species barriers are useful for impeding gene flow and driving desirable gen...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
Engineered underdominance (EU), meiotic drive (MD) and Wolbachia have been proposed as mechanisms fo...
Because of recent advances in genotic insect control theory, it has become important to investigate ...
<div><p>Gene drive systems provide novel opportunities for insect population suppression by driving ...
<div><p>The idea of introducing genetic modifications into wild populations of insects to stop them ...
BACKGROUND:Replacement of wild-type mosquito populations with genetically modified versions is being...
Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease...
Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease...
SummaryReplacement of wild insect populations with genetically modified individuals unable to transm...
[[abstract]]Advances in insect transgenesis and our knowledge of insect physiology and genomics are ...
Replacement of wild insect populations with genetically modified individuals unable to transmit dise...
[[abstract]]Mosquito population replacement requires gene drive mechanisms in order to spread lined ...
Insects play important roles as predators, prey, pollinators, recyclers, hosts, parasitoids, and sou...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
Engineered reproductive species barriers are useful for impeding gene flow and driving desirable gen...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
Engineered underdominance (EU), meiotic drive (MD) and Wolbachia have been proposed as mechanisms fo...
Because of recent advances in genotic insect control theory, it has become important to investigate ...
<div><p>Gene drive systems provide novel opportunities for insect population suppression by driving ...
<div><p>The idea of introducing genetic modifications into wild populations of insects to stop them ...
BACKGROUND:Replacement of wild-type mosquito populations with genetically modified versions is being...