一个快速和通用的方案,转基因表达的三维可视化在整个幼虫果蝇。

IF 1.8 4区 医学 Q3 GENETICS & HEREDITY
Journal of neurogenetics Pub Date : 2021-09-01 Epub Date: 2021-03-10 DOI:10.1080/01677063.2021.1892096
Oliver Kobler, Aliće Weiglein, Kathrin Hartung, Yi-Chun Chen, Bertram Gerber, Ulrich Thomas
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引用次数: 3

摘要

果蝇幼虫在生物学研究的许多领域被用作遗传学研究的案例。在这里,我们报告了一种快速、稳健和用户友好的程序,用于果蝇幼虫的全身多荧光成像;该方案通过系统地解决与清除这种小但表皮化的生物相关的陷阱,专门针对幼虫进行了优化。对各种荧光蛋白的测试表明,最近引入的单体红外荧光蛋白(mIFP)特别适合我们的方法。这种方法包括一种有效的、低成本的清除方案,处理时间最短,所用试剂的毒性降低。它结合了足够高的成功率,以允许小规模的筛选方法和足够的分辨率,细胞水平分析与光片和共聚焦显微镜。鉴于出版物和数据库文件通常只在感兴趣的特定器官系统内指定转基因驱动系的表达模式,目前的程序应该是通用的,足以将这种文件系统地扩展到整个身体。例如,转基因驱动系的表达模式覆盖了大部分神经元,或化学感觉、中枢脑或运动神经元的子集,在整个幼虫体体积的背景下被记录(分别使用nsyb-Gal4、IR76b-Gal4、APL-Gal4和蘑菇体Kenyon细胞,或OK371-Gal4)。值得注意的是,提出的方案允许近红外,红色和黄色荧光蛋白的三色荧光成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A quick and versatile protocol for the 3D visualization of transgene expression across the whole body of larval Drosophila.

Larval Drosophila are used as a genetically accessible study case in many areas of biological research. Here we report a fast, robust and user-friendly procedure for the whole-body multi-fluorescence imaging of Drosophila larvae; the protocol has been optimized specifically for larvae by systematically tackling the pitfalls associated with clearing this small but cuticularized organism. Tests on various fluorescent proteins reveal that the recently introduced monomeric infrared fluorescent protein (mIFP) is particularly suitable for our approach. This approach comprises an effective, low-cost clearing protocol with minimal handling time and reduced toxicity in the reagents employed. It combines a success rate high enough to allow for small-scale screening approaches and a resolution sufficient for cellular-level analyses with light sheet and confocal microscopy. Given that publications and database documentations typically specify expression patterns of transgenic driver lines only within a given organ system of interest, the present procedure should be versatile enough to extend such documentation systematically to the whole body. As examples, the expression patterns of transgenic driver lines covering the majority of neurons, or subsets of chemosensory, central brain or motor neurons, are documented in the context of whole larval body volumes (using nsyb-Gal4, IR76b-Gal4, APL-Gal4 and mushroom body Kenyon cells, or OK371-Gal4, respectively). Notably, the presented protocol allows for triple-color fluorescence imaging with near-infrared, red and yellow fluorescent proteins.

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来源期刊
Journal of neurogenetics
Journal of neurogenetics 医学-神经科学
CiteScore
4.40
自引率
0.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: The Journal is appropriate for papers on behavioral, biochemical, or cellular aspects of neural function, plasticity, aging or disease. In addition to analyses in the traditional genetic-model organisms, C. elegans, Drosophila, mouse and the zebrafish, the Journal encourages submission of neurogenetic investigations performed in organisms not easily amenable to experimental genetics. Such investigations might, for instance, describe behavioral differences deriving from genetic variation within a species, or report human disease studies that provide exceptional insights into biological mechanisms
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