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Molecular tools to create new strains for mosquito sexing and vector control

机译:分子工具创建用于蚊子性别鉴定和载体控制的新菌株

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摘要

Vector control programs based on population reduction by matings with mass-released sterile insects require the release of only male mosquitoes, as the release of females, even if sterile, would increase the number of biting and potentially disease-transmitting individuals. While small-scale releases demonstrated the applicability of sterile males releases to control the yellow fever mosquito Aedes aegypti, large-scale programs for mosquitoes are currently prevented by the lack of efficient sexing systems in any of the vector species.Different approaches of sexing are pursued, including classical genetic and mechanical methods of sex separation. Another strategy is the development of transgenic sexing systems. Such systems already exist in other insect pests. Genome modification tools could be used to apply similar strategies to mosquitoes. Three major tools to modify mosquito genomes are currently used: transposable elements, site-specific recombination systems, and genome editing via TALEN or CRISPR/Cas. All three can serve the purpose of developing sexing systems and vector control strains in mosquitoes in two ways: first, via their use in basic research. A better understanding of mosquito biology, including the sex-determining pathways and the involved genes can greatly facilitate the development of sexing strains. Moreover, basic research can help to identify other regulatory elements and genes potentially useful for the construction of transgenic sexing systems. Second, these genome modification tools can be used to apply the gained knowledge to build and test mosquito sexing strains for vector control.
机译:基于通过与大量释放的不育昆虫交配而减少种群的媒介控制程序只需要释放雄性蚊子,因为即使不育,雌性的释​​放也会增加咬人和可能传播疾病的个体的数量。尽管小规模的释放证明了不育雄性释放物可用于控制黄热病蚊,但由于任何一种媒介物种都缺乏有效的性交系统,目前无法大规模实施蚊子计划。 ,包括经典的性别分离遗传和机械方法。另一策略是发展转基因性系统。这样的系统已经存在于其他害虫中。基因组修饰工具可用于将相似的策略应用于蚊子。当前使用三种主要工具来修饰蚊子基因组:转座因子,位点特异性重组系统以及通过TALEN或CRISPR / Cas进行基因组编辑。三种方法均可用于通过两种方式开发蚊子中的性系统和媒介控制菌株:第一,通过在基础研究中的使用。对蚊子生物学的更好理解,包括确定性别的途径和涉及的基因,可以极大地促进性菌株的发展。而且,基础研究可以帮助确定其他调控元件和基因,这些潜在调控元件和基因可能对构建转基因性系统有用。其次,这些基因组修饰工具可用于将获得的知识用于构建和测试蚊子性别鉴定菌株,以进行载体控制。

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