用于荧光成像的果蝇腹部解剖规程

Blessie Pradeeka Gudelly, Komal Kumar Bollepogu Raja
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引用次数: 0

摘要

果蝇的荧光成像是研究动态生物过程和精确观察细胞基因表达模式所不可或缺的。这项技术利用果蝇幼虫和蛹的透明性,结合先进的显微镜技术,能够实时观察果蝇的发育过程,如形态发生和器官形成。基因编码的荧光蛋白和染料可对细胞和蛋白质进行特异性标记,有助于对完整组织内的空间和时间动态进行详细研究。共聚焦显微镜和双光子显微镜等技术具有高分辨率和深度穿透能力,对于复杂生物结构的三维重建和定量分析至关重要。果蝇的荧光成像支持疾病建模、药物筛选和治疗探索,将基础生物学的见解与潜在的临床应用联系起来。因此,有必要开发成像技术和方案,以准确捕捉和剖析果蝇各种组织中的基因表达模式。在本研究中,我们介绍了制备和成像转基因果蝇腹部的详细方案,这将使研究人员能够研究腹部基本生物过程的基因表达模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protocol for dissection of Drosophila abdomens for fluorescent imaging
Fluorescent imaging in Drosophila species is indispensable for investigating dynamic biological processes and visualizing gene expression patterns with cellular precision. This technique leverages the transparency of Drosophila larvae and pupae, combined with advanced microscopy, to enable real-time observation of developmental events such as morphogenesis and organogenesis. Genetically encoded fluorescent proteins and dyes allow specific labeling of cells and proteins, facilitating detailed studies of spatial and temporal dynamics within intact tissues. Techniques like confocal and two-photon microscopy provide high resolution and depth penetration, essential for 3D reconstruction and quantitative analysis of complex biological structures. Fluorescent imaging in Drosophila supports disease modeling, drug screening, and therapeutic exploration, bridging insights from basic biology to potential clinical applications. It is therefore necessary to develop imaging techniques and protocols that accurately capture and profile gene expression patterns in a wide range of Drosophila tissues. In this study, we present a detailed protocol for preparing and imaging transgenic Drosophila abdomen, which will enable researchers investigate gene expression patterns underlying fundamental biological processes in the abdomen.
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