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中文摘要
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描述(由申请方提供):使用转基因蚊子根除人类疟疾需要开发蚊子释放策略,该策略将导致转基因因子的成功传播,并且选择最佳策略关键取决于蚊子种群之间遗传交换的知识。由于缺乏适用于该系统的数据和统计工具,评估按蚊的基因流动受到阻碍。这里提出的研究旨在开发新的计算方法,以检测在撒哈拉以南非洲的人类疟疾媒介按蚊种群之间在不同时间的遗传交换。目前的统计方法不适用于按蚊,不能区分新旧遗传交换,也不能应用于下一代测序技术数据,所有这些都是获得按蚊近期基因流有用估计所必需的。将开发一种新的方法,将这些功能,并将被应用到三个不同的按蚊种群的数据。这项研究的结果将提供关于三个不同人群之间基因交换的速率、方向和时间的宝贵估计,这些信息对于制定最佳疟疾根除战略至关重要。
英文摘要
DESCRIPTION (provided by applicant): Eradication of human malaria using genetically modified mosquitoes requires the development of mosquito release strategies that will result in successful spread of the transgenic factors, and choosing optimal strategies depends critically on knowledge of genetic exchange among mosquito populations. Assessing gene-flow in Anopheles malaria mosquitoes has been hampered by a lack of data and statistical tools appropriate for the system. The research proposed here aims to develop novel computational methods to detect genetic exchange at different times among populations of Anopheles mosquito vectors of human malaria in sub-Saharan Africa. Current statistical methods are not appropriate for Anopheles, do not distinguish between old and new genetic exchange, and cannot be applied to next-generation sequencing technology data, all of which are necessary to obtain useful estimates of recent gene-flow in Anopheles. A novel method will be developed to incorporate these features, and will be applied to data from three divergent populations of Anopheles. The results of this research will provide valuable estimates of the rate, direction and timing of genetic exchange among three divergent populations, information that is essential for developing optimal malaria eradication strategies.
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Detecting admixture in Anopheles malaria vectors
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