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Antiviral Effectors and Gene Drive Strategies for Mosquito Population Suppression or Replacement to Mitigate Arbovirus Transmission by Aedes aegypti

机译:蚊虫种群抑制或替代以减轻埃及伊蚊虫媒病毒传播的抗病毒效应子和基因驱动策略。

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摘要

The mosquito vector transmits arthropod-borne viruses (arboviruses) of medical importance, including Zika, dengue, and yellow fever viruses. Controlling mosquito populations remains the method of choice to prevent disease transmission. Novel mosquito control strategies based on genetically manipulating mosquitoes are being developed as additional tools to combat arbovirus transmission. Genetic control of mosquitoes includes two basic strategies: population suppression and population replacement. The former aims to eliminate mosquito populations while the latter aims to replace wild populations with engineered, pathogen-resistant mosquitoes. In this review, we outline suppression strategies being applied in the field, as well as current antiviral effector genes that have been characterized and expressed in transgenic for population replacement. We discuss cutting-edge gene drive technologies that can be used to enhance the inheritance of effector genes, while highlighting the challenges and opportunities associated with gene drives. Finally, we present currently available models that can estimate mosquito release numbers and time to transgene fixation for several gene drive systems. Based on the recent advances in genetic engineering, we anticipate that antiviral transgenic exhibiting gene drive will soon emerge; however, close monitoring in simulated field conditions will be required to demonstrate the efficacy and utility of such transgenic mosquitoes.
机译:蚊媒传播具有医学重要性的节肢动物传播的病毒(虫媒病毒),包括寨卡病毒,登革热和黄热病病毒。控制蚊子种群仍然是预防疾病传播的首选方法。基于基因操纵蚊子的新型蚊子控制策略正在被开发为对抗虫媒病毒传播的其他工具。蚊子的遗传控制包括两个基本策略:种群抑制和种群替代。前者旨在消除蚊子种群,而后者旨在以工程改造,抗病原体的蚊子代替野生种群。在这篇综述中,我们概述了在该领域中应用的抑制策略,以及在转基因中已表征和表达的当前抗病毒效应基因,可用于种群替代。我们讨论了可用于增强效应基因遗传的前沿基因驱动技术,同时重点介绍了与基因驱动相关的挑战和机遇。最后,我们介绍了当前可用的模型,这些模型可以估计几种基因驱动系统的蚊子释放数量和转基因固定的时间。基于基因工程的最新进展,我们预计抗病毒转基因展示基因驱动将很快出现。但是,将需要在模拟田间条件下进行严密监视,以证明这种转基因蚊子的功效和实用性。

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