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评估转基因方法控制埃及伊蚊的可行性:基于模型的评估。

Assessing the feasibility of controlling Aedes aegypti with transgenic methods: a model-based evaluation.

机构信息

Department of Entomology, North Carolina State University, Raleigh, North Carolina, USA.

出版信息

PLoS One. 2012;7(12):e52235. doi: 10.1371/journal.pone.0052235. Epub 2012 Dec 21.

Abstract

Suppression of dengue and malaria through releases of genetically engineered mosquitoes might soon become feasible. Aedes aegypti mosquitoes carrying a conditionally lethal transgene have recently been used to suppress local vector populations in small-scale field releases. Prior to releases of transgenic insects on a wider scale, however, most regulatory authorities will require additional evidence that suppression will be effective in natural heterogeneous habitats. We use a spatially explicit stochastic model of an Ae. aegypti population in Iquitos, Peru, along with an uncertainty analysis of its predictions, to quantitatively assess the outcome of varied operational approaches for releases of transgenic strains with conditional death of females. We show that population elimination might be an unrealistic objective in heterogeneous populations. We demonstrate that substantial suppression can nonetheless be achieved if releases are deployed in a uniform spatial pattern using strains combining multiple lethal elements, illustrating the importance of detailed spatial models for guiding genetic mosquito control strategies.

摘要

通过释放基因工程蚊子来抑制登革热和疟疾可能很快成为现实。携带条件致死转基因的埃及伊蚊最近已被用于小规模野外释放中抑制当地病媒种群。然而,在更广泛地释放转基因昆虫之前,大多数监管机构将要求提供更多证据,证明抑制在自然异质生境中是有效的。我们使用了一个在秘鲁伊基托斯的埃及伊蚊种群的空间显式随机模型,以及对其预测的不确定性分析,来定量评估释放具有雌性条件致死的转基因品系的各种操作方法的结果。我们表明,在异质种群中,消灭种群可能是不切实际的目标。我们证明,如果使用结合多种致死因素的品系以统一的空间模式进行释放,仍然可以实现大量的抑制,这说明了详细的空间模型对于指导遗传蚊子控制策略的重要性。

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