Department of Microbiology, Immunology, and Pathology, Colorado State University, Fort Collins, CO 80523, USA.
Department of Veterinary Pathobiology, University of Missouri, Columbia, MO 65211, USA.
Viruses. 2020 Oct 30;12(11):1231. doi: 10.3390/v12111231.
The resurgence of arbovirus outbreaks across the globe, including the recent Zika virus (ZIKV) epidemic in 2015-2016, emphasizes the need for innovative vector control methods. In this study, we investigated ZIKV susceptibility to transgenic engineered to target the virus by means of the antiviral small-interfering RNA (siRNA) pathway. The robustness of antiviral effector expression in transgenic mosquitoes is strongly influenced by the genomic insertion locus and transgene copy number; we therefore used CRISPR/Cas9 to re-target a previously characterized locus (Chr2:321382225) and engineered mosquitoes expressing an inverted repeat (IR) dsRNA against the NS3/4A region of the ZIKV genome. Small RNA analysis revealed that the IR effector triggered the mosquito's siRNA antiviral pathway in bloodfed females. Nearly complete (90%) inhibition of ZIKV replication was found in vivo in both midguts and carcasses at 7 or 14 days post-infection (dpi). Furthermore, significantly fewer transgenic mosquitoes contained ZIKV in their salivary glands ( = 0.001), which led to a reduction in the number of ZIKV-containing saliva samples as measured by transmission assay. Our work shows that innate immunity can be co-opted to engineer mosquitoes resistant to ZIKV.
全球虫媒病毒疫情的死灰复燃,包括 2015-2016 年的寨卡病毒(ZIKV)疫情,凸显了创新的病媒控制方法的必要性。在这项研究中,我们研究了 ZIKV 对通过抗病毒小干扰 RNA(siRNA)途径靶向病毒的转基因蚊子的易感性。抗病毒效应物在转基因蚊子中的表达稳健性强烈受到基因组插入位点和转基因拷贝数的影响;因此,我们使用 CRISPR/Cas9 重新靶向一个先前表征的基因座(Chr2:321382225),并构建了表达针对 ZIKV 基因组 NS3/4A 区的反向重复(IR)dsRNA 的转基因蚊子。小 RNA 分析显示,IR 效应物在吸血雌性蚊子中触发了蚊子的 siRNA 抗病毒途径。在感染后 7 或 14 天的中肠和尸体中,体内几乎完全抑制了 ZIKV 的复制(90%)。此外,转基因蚊子唾液腺中 ZIKV 的含量明显减少(=0.001),这导致通过传播试验测量的含有 ZIKV 的唾液样本数量减少。我们的工作表明,可以利用先天免疫来工程改造蚊子以抵抗 ZIKV。