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Semele: A Killer-Male, Rescue-Female System for Suppression and Replacement of Insect Disease Vector Populations

机译:Semele:抑制和替代昆虫疾病媒介种群的杀手,雌雄,拯救系统

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摘要

Two strategies to control mosquito-borne diseases, such as malaria and dengue fever, are reducing mosquito population sizes or replacing populations with disease-refractory varieties. We propose a genetic system, Semele, which may be used for both. Semele consists of two components: a toxin expressed in transgenic males that either kills or renders infertile wild-type female recipients and an antidote expressed in females that protects them from the effects of the toxin. An all-male release results in population suppression because wild-type females that mate with transgenic males produce no offspring. A release that includes transgenic females results in gene drive since females carrying the allele are favored at high population frequencies. We use simple population genetic models to explore the utility of the Semele system. We find that Semele can spread under a wide range of conditions, all of which require a high introduction frequency. This feature is desirable since transgenic insects released accidentally are unlikely to persist, transgenic insects released intentionally can be spatially confined, and the element can be removed from a population through sustained release of wild-type insects. We examine potential barriers to Semele gene drive and suggest molecular tools that could be used to build the Semele system.
机译:控制蚊子传播的疾病(如疟疾和登革热)的两种策略是减小蚊子的种群规模或以难治性品种替代种群。我们提出了一个遗传系统,Semele,可用于两者。 Semele由两部分组成:一种在转基因雄性中表达的毒素,该毒素杀死或致使不育的野生型雌性受体,以及在雌性中表达的一种解毒剂,保护它们免受毒素的作用。全雄性释放导致种群抑制,因为与转基因雄性交配的野生型雌性不产生后代。包含转基因雌性的释放导致基因驱动,因为携带等位基因的雌性在高种群频率下受到青睐。我们使用简单的种群遗传模型来探索Semele系统的实用性。我们发现Semele可以在广泛的条件下传播,所有这些条件都需要很高的引入频率。该特征是期望的,因为偶然释放的转基因昆虫不太可能持续存在,有意释放的转基因昆虫可以在空间上受到限制,并且可以通过持续释放野生型昆虫而从种群中去除该元素。我们研究了Semele基因驱动的潜在障碍,并提出了可用于构建Semele系统的分子工具。

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