Troha Katia, Buchon Nicolas
Department of Entomology, Cornell Institute of Host-Microbe Interactions and Disease, Cornell University, Ithaca, New York.
Wiley Interdiscip Rev Dev Biol. 2019 Sep;8(5):e344. doi: 10.1002/wdev.344. Epub 2019 Apr 16.
From flies to humans, many components of the innate immune system have been conserved during metazoan evolution. This foundational observation has allowed us to develop Drosophila melanogaster, the fruit fly, into a powerful model to study innate immunity in animals. Thanks to an ever-growing arsenal of genetic tools, an easily manipulated genome, and its winning disposition, Drosophila is now employed to study not only basic molecular mechanisms of pathogen recognition and immune signaling, but also the nature of physiological responses activated in the host by microbial challenge and how dysregulation of these processes contributes to disease. Here, we present a collection of methods and protocols to challenge the fly with an assortment of microbes, both systemically and orally, and assess its humoral, cellular, and epithelial response to infection. Our review covers techniques for measuring the reaction to microbial infection both qualitatively and quantitatively. Specifically, we describe survival, bacterial load, BLUD (a measure of disease tolerance), phagocytosis, melanization, clotting, and ROS production assays, as well as efficient protocols to collect hemolymph and measure immune gene expression. We also offer an updated catalog of online resources and a collection of popular reporter lines and mutants to facilitate research efforts. This article is categorized under: Technologies > Analysis of Cell, Tissue, and Animal Phenotypes.
从果蝇到人类,先天免疫系统的许多组成部分在多细胞动物进化过程中得以保留。这一基本发现使我们能够将黑腹果蝇(即果蝇)发展成为研究动物先天免疫的强大模型。得益于不断增加的基因工具库、易于操作的基因组以及其良好的特性,果蝇如今不仅被用于研究病原体识别和免疫信号传导的基本分子机制,还用于研究宿主因微生物攻击而激活的生理反应的本质,以及这些过程的失调如何导致疾病。在此,我们介绍一系列方法和方案,用于通过全身和口服方式用各种微生物攻击果蝇,并评估其对感染的体液、细胞和上皮反应。我们的综述涵盖了定性和定量测量对微生物感染反应的技术。具体而言,我们描述了存活率、细菌载量、BLUD(一种疾病耐受性测量指标)、吞噬作用、黑化作用、凝血和活性氧产生测定,以及收集血淋巴和测量免疫基因表达的有效方案。我们还提供了一份更新的在线资源目录以及一系列常用的报告基因品系和突变体,以促进研究工作。本文分类如下:技术>细胞、组织和动物表型分析。