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首页> 外文期刊>Journal of Theoretical Biology >Modelling Aedes aegypti mosquito control via transgenic and sterile insect techniques: Endemics and emerging outbreaks
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Modelling Aedes aegypti mosquito control via transgenic and sterile insect techniques: Endemics and emerging outbreaks

机译:通过转基因和不育昆虫技术模拟埃及伊蚊的灭蚊:地方病和新出现的暴发

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The invasion of pest insects often changes or destroys a native ecosystem, and can result in food shortages and disease endemics. Issues such as the environmental effects of chemical control methods, the economic burden of maintaining control strategies and the risk of pest resistance still remain, and mosquito-borne diseases such as malaria and dengue fever prevail in many countries, infecting over 100 million worldwide in 2010. One environmentally friendly method for mosquito control is the Sterile Insect Technique (SIT). This species-specific method of insect control relies on the mass rearing, sterilization and release of large numbers of sterile insects. An alternative transgenic method is the Release of Insects carrying a Dominant Lethal (RIDL). Our objective is to consider contrasting control strategies for two invasive scenarios via SIT and RIDL: an endemic case and an emerging outbreak. We investigate how the release rate and size of release region influence both the potential for control success and the resources needed to achieve it, under a range of conditions and control strategies, and we discuss advantageous strategies with respect to reducing the release resources and strategy costs (in terms of control mosquito numbers) required to achieve complete eradication of wild-type mosquitoes.
机译:害虫的入侵通常会改变或破坏本地生态系统,并可能导致粮食短缺和疾病流行。仍然存在诸如化学控制方法的环境影响,维持控制策略的经济负担以及有害生物抗药性等问题,许多国家普遍存在由蚊子传播的疾病,例如疟疾和登革热,2010年全世界感染了1亿多人一种环境友好的灭蚊方法是无菌昆虫技术(SIT)。这种特定物种的昆虫控制方法依赖于大量繁殖,消毒和释放大量无菌昆虫的方法。另一种转基因方法是释放携带主要致死性(RIDL)的昆虫。我们的目标是考虑通过SIT和RIDL对两种侵入性方案进行对比的控制策略:地方性病例和新发暴发。在一系列条件和控制策略下,我们研究释放速率和释放区域的大小如何影响控制成功的潜力和实现该目标所需的资源,并讨论有关减少释放资源和策略成本的有利策略(就控制蚊子数量而言),以彻底根除野生型蚊子。

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