SummaryReplacement of wild insect populations with genetically modified individuals unable to transmit disease provides a self-perpetuating method of disease prevention but requires a gene drive mechanism to spread these traits to high frequency [1–3]. Drive mechanisms requiring that transgenes exceed a threshold frequency in order to spread are attractive because they bring about local but not global replacement, and transgenes can be eliminated through dilution of the population with wild-type individuals [4–6]. These features are likely to be important in many social and regulatory contexts [7–10]. Here we describe the first creation of a synthetic threshold-dependent gene drive system, designated maternal-effect lethal underdominance (U...
Synthetic gene drive systems possess enormous potential to replace, alter, or suppress wild populati...
[[abstract]]Insects act as vectors for diseases of plants, animals, and humans. Replacement of wild ...
Insects act as vectors for diseases of plants, animals, and humans. Replacement of wild insect popul...
SummaryReplacement of wild insect populations with genetically modified individuals unable to transm...
[[abstract]]Mosquito population replacement requires gene drive mechanisms in order to spread lined ...
Replacement of wild insect populations with genetically modified individuals unable to transmit dise...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
<div><p>Gene drive systems provide novel opportunities for insect population suppression by driving ...
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...
Engineered underdominance is one of a number of different gene drive strategies that have been propo...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
Underdominance gene drives are frequency-dependent drives that aim to spread a desired homozygote ge...
Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease...
Synthetic gene drive systems possess enormous potential to replace, alter, or suppress wild populati...
[[abstract]]Insects act as vectors for diseases of plants, animals, and humans. Replacement of wild ...
Insects act as vectors for diseases of plants, animals, and humans. Replacement of wild insect popul...
SummaryReplacement of wild insect populations with genetically modified individuals unable to transm...
[[abstract]]Mosquito population replacement requires gene drive mechanisms in order to spread lined ...
Replacement of wild insect populations with genetically modified individuals unable to transmit dise...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
<div><p>Gene drive systems provide novel opportunities for insect population suppression by driving ...
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...
Engineered underdominance is one of a number of different gene drive strategies that have been propo...
Gene drive systems provide novel opportunities for insect population suppression by driving genes th...
Underdominance gene drives are frequency-dependent drives that aim to spread a desired homozygote ge...
Replacement of wild insect populations with transgene-bearing individuals unable to transmit disease...
Synthetic gene drive systems possess enormous potential to replace, alter, or suppress wild populati...
[[abstract]]Insects act as vectors for diseases of plants, animals, and humans. Replacement of wild ...
Insects act as vectors for diseases of plants, animals, and humans. Replacement of wild insect popul...