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根扩展显微镜技术:一种用于拟南芥超分辨率成像的可靠方法。

Root expansion microscopy: A robust method for super resolution imaging in Arabidopsis.

作者信息

Grison Magali S, Maucort Guillaume, Dumazel Amandine, Champelovier Dorian, Shimizu Yutaro, Boutté Yohann, Fernández-Monreal Mónica, Bayer Emmanuelle M

机构信息

Laboratoire de Biogenèse Membranaire, UMR5200, CNRS, Université de Bordeaux, 33140 Villenave d'Ornon, France.

Université de Bordeaux, CNRS, INSERM, Bordeaux Imaging Center (BIC), US4, UAR 3420, 33000 Bordeaux, France.

出版信息

Plant Cell. 2025 Apr 2;37(4). doi: 10.1093/plcell/koaf050.

DOI:10.1093/plcell/koaf050
PMID:40207705
Abstract

Expansion microscopy (ExM) has revolutionized biological imaging by physically enlarging samples, surpassing the light diffraction limit, and enabling nanoscale visualization using standard microscopes. While extensively employed across a wide range of biological samples, its application to plant tissues is sparse. In this work, we present ROOT-ExM, an expansion method suited for stiff and intricate multicellular plant tissues, focusing on the primary root of Arabidopsis (Arabidopsis thaliana). ROOT-ExM achieves isotropic expansion with a 4-fold increase in resolution, enabling super-resolution microscopy comparable to stimulated emission depletion (STED) microscopy. Labeling is achieved through immunolocalization, compartment-specific dyes, and native fluorescence preservation, while N-hydroxysuccinimide ester-dye conjugates reveal the ultrastructural context of cells alongside specific labeling. We successfully applied ROOT-ExM to image various organelles and subcellular compartments, including the Golgi apparatus, the endoplasmic reticulum, the cytoskeleton, and tiny wall-embedded structures such as plasmodesmata. Combination of ROOT-ExM with STED enabled reaching an unprecedented resolution of plasmodesmata by light microscopy. When combined with lattice light sheet microscopy, ROOT-ExM enabled 3D quantitative analysis of nanoscale cellular processes, such as the size quantification of vesicles near the cell plate during cell division. Achieving super-resolution fluorescence imaging in plant biology remains a formidable challenge. Our findings underscore that ROOT-ExM provides a remarkable, cost-effective solution to this challenge, paving the way for valuable insights into plant subcellular architecture.

摘要

扩展显微镜技术(ExM)通过对样本进行物理放大,突破了光衍射极限,从而实现了使用标准显微镜进行纳米级可视化,给生物成像带来了革命性变化。尽管该技术在广泛的生物样本中得到了广泛应用,但其在植物组织中的应用却很少。在这项工作中,我们展示了ROOT-ExM,这是一种适用于坚硬且复杂的多细胞植物组织的扩展方法,重点研究拟南芥(Arabidopsis thaliana)的初生根。ROOT-ExM实现了各向同性扩展,分辨率提高了4倍,能够实现与受激发射损耗(STED)显微镜相当的超分辨率显微镜成像。标记通过免疫定位、特定区域染料和天然荧光保留来实现,而N-羟基琥珀酰亚胺酯-染料共轭物在特异性标记的同时揭示了细胞的超微结构背景。我们成功地将ROOT-ExM应用于各种细胞器和亚细胞区域的成像,包括高尔基体、内质网、细胞骨架以及诸如胞间连丝等微小的壁内结构。ROOT-ExM与STED相结合,通过光学显微镜实现了前所未有的胞间连丝分辨率。当与晶格光片显微镜结合使用时,ROOT-ExM能够对纳米级细胞过程进行三维定量分析,例如细胞分裂期间细胞板附近囊泡大小的量化。在植物生物学中实现超分辨率荧光成像仍然是一项艰巨的挑战。我们的研究结果强调,ROOT-ExM为这一挑战提供了一种卓越且经济高效的解决方案,为深入了解植物亚细胞结构开辟了道路。

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本文引用的文献

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Plant Cell. 2025 Apr 2;37(4). doi: 10.1093/plcell/koaf006.
2
Expanding boundaries - a cell biologist's guide to expansion microscopy.拓展边界——细胞生物学家的扩展显微镜指南。
J Cell Sci. 2024 Apr 1;137(7). doi: 10.1242/jcs.260765. Epub 2024 Apr 17.
3
Expansion microscopy resolves the thylakoid structure of spinach.扩展显微镜解析菠菜类囊体结构。
Plant Physiol. 2023 Dec 30;194(1):347-358. doi: 10.1093/plphys/kiad526.
4
Expansion Microscopy of Plant Cells (PlantExM).植物细胞扩展显微镜(PlantExM)。
Methods Mol Biol. 2023;2604:127-142. doi: 10.1007/978-1-0716-2867-6_10.
5
Expansion Microscopy: Super-Resolution Imaging with Hydrogels.膨胀显微镜:利用水凝胶进行超分辨率成像
Anal Chem. 2023 Jan 10;95(1):3-32. doi: 10.1021/acs.analchem.2c04921.
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Ultrastructure expansion microscopy reveals the cellular architecture of budding and fission yeast.超微结构扩展显微镜揭示出芽殖酵母和裂殖酵母的细胞结构。
J Cell Sci. 2022 Dec 15;135(24). doi: 10.1242/jcs.260240. Epub 2022 Dec 16.
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Elife. 2022 Aug 31;11:e73837. doi: 10.7554/eLife.73837.
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