Jiangsu Key Laboratory of Infection and Immunity, Institutes of Biology and Medical Sciences, Soochow University, Suzhou, China.
Cytometry A. 2021 Jun;99(6):560-574. doi: 10.1002/cyto.a.24325. Epub 2021 Feb 27.
Caenorhabditis elegans (C. elegans) as a well-established multicellular model organism has been widely used in the biological field for half a century. Its numerous advantages including small body size, rapid life cycle, high-reproductive rate, well-defined anatomy, and conserved genome, has made C. elegans one of the most successful multicellular model organisms. Discoveries obtained from the C. elegans model have made great contributions to research fields such as development, aging, biophysics, immunology, and neuroscience. Because of its transparent body and giant cell size, C. elegans is also an ideal subject for high resolution and high-throughput optical imaging and analysis. During the past decade, great advances have been made to develop biomolecule-targeting techniques for noninvasive optical imaging. These novel technologies expanded the toolbox for qualitative and quantitative analysis of biomolecules in C. elegans. In this review, we summarize recently developed fluorescent probes or labeling techniques for visualizing biomolecules at the cellular, subcellular or molecular scale by using C. elegans as the major model organism or designed specifically for the applications in C. elegans. Combining the technological advantages of the C. elegans model with the novel fluorescent labeling techniques will provide new horizons for high-efficiency quantitative optical analysis in live organisms.
秀丽隐杆线虫(C. elegans)作为一种成熟的多细胞模式生物,在生物学领域已经被广泛应用了半个世纪。其诸多优点,包括体型小、生命周期短、繁殖率高、解剖结构明确和基因组保守,使得 C. elegans 成为最成功的多细胞模式生物之一。从 C. elegans 模型中获得的发现,为发育、衰老、生物物理学、免疫学和神经科学等研究领域做出了巨大贡献。由于其身体透明和巨细胞的特点,C. elegans 也是高分辨率和高通量光学成像和分析的理想对象。在过去的十年中,人们已经取得了很大的进展,开发了针对生物分子的靶向技术,用于非侵入性的光学成像。这些新技术扩展了对 C. elegans 中生物分子进行定性和定量分析的工具包。在这篇综述中,我们总结了最近开发的荧光探针或标记技术,用于通过将 C. elegans 作为主要模型生物或专门设计用于 C. elegans 的应用,在细胞、亚细胞或分子尺度上可视化生物分子。将 C. elegans 模型的技术优势与新型荧光标记技术相结合,将为活体生物的高效定量光学分析提供新的前景。