Department of Biological Sciences, San José State University.
Department of Biological Sciences, San José State University;
J Vis Exp. 2024 Nov 8(213). doi: 10.3791/67485.
The Drosophila compound eye is a precisely patterned tissue that has revealed molecular mechanisms and biological processes that drive morphogenesis. It is a simple structure of repeating unit eyes, termed ommatidia, that is used to characterize genetic interactions and gene functions. Mutations that affect eye architecture can be easily detected and analyzed; hence, this system is frequently used in under-resourced institutions. Further phenotypic analysis often includes a Scanning Electron Microscope (SEM) to generate high-magnification images suitable for quantitative analysis. However, SEMs are expensive and require costly reagents; sample preparation spans days; and, often, they need full-time staff for sample preparation and instrument maintenance. This limits their utility at under-resourced institutions or during budgetary austerity. In entomology, the use of high-resolution digital imaging technology is a common practice for the identification and characterization of species. This paper describes a method that combines strategies and allows for high-resolution digital imaging of adult Drosophila structures and quantitative analysis using the open software ImageJ. The workflow is a rapid and student-friendly alternative that remedies the limitations of underfunded and under-resourced research facilities with a cost-effective and rapid approach to quantitative phenotypic analysis.
果蝇的复眼是一种具有精确图案的组织,它揭示了驱动形态发生的分子机制和生物学过程。它是一种由重复的小眼单位组成的简单结构,称为小眼,用于表征遗传相互作用和基因功能。影响眼睛结构的突变很容易被检测和分析;因此,该系统经常在资源匮乏的机构中使用。进一步的表型分析通常包括扫描电子显微镜(SEM),以生成适合定量分析的高倍图像。然而,SEM 价格昂贵,需要昂贵的试剂;样品制备需要数天;而且,通常需要全职人员进行样品制备和仪器维护。这限制了它们在资源匮乏的机构或预算紧缩期间的应用。在昆虫学中,使用高分辨率数字成像技术是识别和描述物种的常见做法。本文描述了一种方法,该方法结合了策略,允许使用开放软件 ImageJ 对成年果蝇结构进行高分辨率数字成像和定量分析。该工作流程是一种快速且适合学生的替代方法,它解决了资金不足和资源匮乏的研究设施的局限性,提供了一种经济高效且快速的定量表型分析方法。