School of Biological Sciences, University of California San Diego, La Jolla, California.
Curr Protoc. 2024 Jul;4(7):e1098. doi: 10.1002/cpz1.1098.
Orsay virus infection in the nematode Caenorhabditis elegans presents an opportunity to study host-virus interactions in an easily culturable, whole-animal host. Previously, a major limitation of C. elegans as a model for studying antiviral immunity was the lack of viruses known to naturally infect the worm. With the 2011 discovery of the Orsay virus, a naturally occurring viral pathogen, C. elegans has emerged as a compelling model for research on antiviral defense. From the perspective of the host, the genetic tractability of C. elegans enables mechanistic studies of antiviral immunity while the transparency of this animal allows for the observation of subcellular processes in vivo. Preparing infective virus filtrate and performing infections can be achieved with relative ease in a laboratory setting. Moreover, several tools are available to measure the outcome of infection. Here, we describe workflows for generating infective virus filtrate, achieving reproducible infection of C. elegans, and assessing the outcome of viral infection using molecular biology approaches and immunofluorescence. © 2024 The Authors. Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Preparation of Orsay virus filtrate Support Protocol: Synchronize C. elegans development by bleaching Basic Protocol 2: Orsay virus infection Basic Protocol 3: Quantification of Orsay virus RNA1/RNA2 transcript levels by qRT-PCR Basic Protocol 4: Quantification of infection rate and fluorescence in situ hybridization (FISH) fluorescence intensity Basic Protocol 5: Immunofluorescent labeling of dsRNA in virus-infected intestinal tissue.
秀丽隐杆线虫(Caenorhabditis elegans)感染 Orsay 病毒为研究宿主-病毒相互作用提供了一个机会,因为秀丽隐杆线虫易于培养,且是一种整体动物宿主。此前,秀丽隐杆线虫作为研究抗病毒免疫的模型,其主要局限性是缺乏已知可自然感染该蠕虫的病毒。随着 2011 年 Orsay 病毒(一种自然发生的病毒病原体)的发现,秀丽隐杆线虫作为研究抗病毒防御的有力模型而出现。从宿主的角度来看,秀丽隐杆线虫的遗传易处理性使其能够进行抗病毒免疫的机制研究,而该动物的透明性使其能够在体内观察亚细胞过程。在实验室环境中,可以相对轻松地制备感染性病毒滤液并进行感染。此外,还有几种工具可用于测量感染的结果。在这里,我们描述了生成感染性病毒滤液、实现秀丽隐杆线虫可重复感染以及使用分子生物学方法和免疫荧光评估病毒感染结果的工作流程。