Engineered underdominance (EU), meiotic drive (MD) and Wolbachia have been proposed as mechanisms for driving anti-pathogen transgenes into natural populations of insect vectors of human diseases. EU can drive transgenes to high and stable frequencies but requires the release of sizeable numbers of engineered insects. MD and Wolbachia either cannot maintain high frequencies of transgenes or lack appropriate expression in critical tissues, but both can drive the transgenes to spread from very low initial frequencies. Here we use mathematical models to assess the utility of combining EU with MD or withWolbachia. Under some conditions, the combination of EU and MD results in a more efficient transgene-drive strategy than either mechanism alone...
Genetic transformation techniques for pest insects have enabled the development of novel methods to ...
Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease...
Gene-drive endonucleases (GDEs) are genes that can spread through a population through a non-Mendeli...
Background: Transgenic constructs intended to be stably established at high frequencies in wild popu...
[[abstract]]Mosquito population replacement requires gene drive mechanisms in order to spread lined ...
Wolbachia is an inherited intracellular bacterium found in many insects of medical and economic impo...
Engineered underdominance is one of a number of different gene drive strategies that have been propo...
Wolbachia is an inherited intracellular bacterium found in many insects of medical and economic impo...
BACKGROUND:Replacement of wild-type mosquito populations with genetically modified versions is being...
Advances in insect transgenesis and our knowledge of insect physiology and genomics are making it po...
<div><p>Gene drive systems provide novel opportunities for insect population suppression by driving ...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
SummaryReplacement of wild insect populations with genetically modified individuals unable to transm...
Advances in the genetic modification of organisms are creating new opportunities for the control of ...
Replacement of wild-type mosquito populations with genetically modified versions is being explored a...
Genetic transformation techniques for pest insects have enabled the development of novel methods to ...
Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease...
Gene-drive endonucleases (GDEs) are genes that can spread through a population through a non-Mendeli...
Background: Transgenic constructs intended to be stably established at high frequencies in wild popu...
[[abstract]]Mosquito population replacement requires gene drive mechanisms in order to spread lined ...
Wolbachia is an inherited intracellular bacterium found in many insects of medical and economic impo...
Engineered underdominance is one of a number of different gene drive strategies that have been propo...
Wolbachia is an inherited intracellular bacterium found in many insects of medical and economic impo...
BACKGROUND:Replacement of wild-type mosquito populations with genetically modified versions is being...
Advances in insect transgenesis and our knowledge of insect physiology and genomics are making it po...
<div><p>Gene drive systems provide novel opportunities for insect population suppression by driving ...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
SummaryReplacement of wild insect populations with genetically modified individuals unable to transm...
Advances in the genetic modification of organisms are creating new opportunities for the control of ...
Replacement of wild-type mosquito populations with genetically modified versions is being explored a...
Genetic transformation techniques for pest insects have enabled the development of novel methods to ...
Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease...
Gene-drive endonucleases (GDEs) are genes that can spread through a population through a non-Mendeli...