Super-resolution expansion microscopy in plant roots
Gallei MC, Truckenbrodt SM, Kreuzinger C, Inumella S, Vistunou V, Sommer CM, Tavakoli M, Agudelo Duenas N, Vorlaufer J, Jahr W, Randuch M, Johnson AJ, Benková E, Friml J, Danzl JG. 2025. Super-resolution expansion microscopy in plant roots. The Plant Cell. 37(4), koaf006.
Download
Journal Article
| Published
| English
Scopus indexed
Author
Corresponding author has ISTA affiliation
Department
Grant
Tracing Evolution of Auxin Transport and Polarity in Plants
International IST Doctoral Program
ISTplus - Postdoctoral Fellowships
UltraX - achieving sub-nanometer resolution in light microscopy using iterative X10 microscopy in combination with nanobodies and STED
Studying Organelle Structure and Function at Nanoscale Resolution with Expansion Microscopy
Molecular Drug Targets
International IST Doctoral Program
ISTplus - Postdoctoral Fellowships
UltraX - achieving sub-nanometer resolution in light microscopy using iterative X10 microscopy in combination with nanobodies and STED
Studying Organelle Structure and Function at Nanoscale Resolution with Expansion Microscopy
Molecular Drug Targets
Abstract
Super-resolution methods provide far better spatial resolution than the optical diffraction limit of about half the wavelength of light (∼200-300 nm). Nevertheless, they have yet to attain widespread use in plants, largely due to plants’ challenging optical properties. Expansion microscopy improves effective resolution by isotropically increasing the physical distances between sample structures while preserving relative spatial arrangements and clearing the sample. However, its application to plants has been hindered by the rigid, mechanically cohesive structure of plant tissues. Here, we report on whole-mount expansion microscopy of thale cress (Arabidopsis thaliana) root tissues (PlantEx), achieving a four-fold resolution increase over conventional microscopy. Our results highlight the microtubule cytoskeleton organization and interaction between molecularly defined cellular constituents. Combining PlantEx with stimulated emission depletion (STED) microscopy, we increase nanoscale resolution and visualize the complex organization of subcellular organelles from intact tissues by example of the densely packed COPI-coated vesicles associated with the Golgi apparatus and put these into a cellular structural context. Our results show that expansion microscopy can be applied to increase effective imaging resolution in Arabidopsis root specimens.
Publishing Year
Date Published
2025-04-01
Journal Title
The Plant Cell
Publisher
Oxford University Press
Acknowledgement
We gratefully acknowledge support by the Scientific Service Units at ISTA, including the Imaging and Optics and Lab Support facilities and the mechanical workshop and Library. We thank Philipp Velicky for STED microscope alignment.
This project has received funding from the European Research Council under the Horizon 2020 Framework Programme (grant agreement No 742985, J.F.). It has also received funding from the Horizon 2020 Framework Programme under the Marie Skłodowska-Curie Grant Agreement No. 665385 (M.G.). S.T. has received funding as an ISTplus Fellow from the Horizon 2020 Framework Programme under Marie Skłodowska-Curie grant agreement no. 754411 and from EMBO via a Long-Term Fellowship (grant number ALTF 679-2018). M.R.T. received funding from the Austrian Academy of Sciences with DOC fellowship no. 26137. The project has further received funding from the Austrian Science Fund, via grant DK W1232 (M.R.T., N.A.D., and J.G.D). W.J. received a postdoctoral fellowship from the Human Frontier Science Program (LT000557/2018). The funders had no role in study design, data collection and analysis, decision to publish or preparation of the manuscript.
Acknowledged SSUs
Volume
37
Issue
4
Article Number
koaf006
ISSN
eISSN
IST-REx-ID
Cite this
Gallei MC, Truckenbrodt SM, Kreuzinger C, et al. Super-resolution expansion microscopy in plant roots. The Plant Cell. 2025;37(4). doi:10.1093/plcell/koaf006
Gallei, M. C., Truckenbrodt, S. M., Kreuzinger, C., Inumella, S., Vistunou, V., Sommer, C. M., … Danzl, J. G. (2025). Super-resolution expansion microscopy in plant roots. The Plant Cell. Oxford University Press. https://doi.org/10.1093/plcell/koaf006
Gallei, Michelle C, Sven M Truckenbrodt, Caroline Kreuzinger, Syamala Inumella, Vitali Vistunou, Christoph M Sommer, Mojtaba Tavakoli, et al. “Super-Resolution Expansion Microscopy in Plant Roots.” The Plant Cell. Oxford University Press, 2025. https://doi.org/10.1093/plcell/koaf006.
M. C. Gallei et al., “Super-resolution expansion microscopy in plant roots,” The Plant Cell, vol. 37, no. 4. Oxford University Press, 2025.
Gallei MC, Truckenbrodt SM, Kreuzinger C, Inumella S, Vistunou V, Sommer CM, Tavakoli M, Agudelo Duenas N, Vorlaufer J, Jahr W, Randuch M, Johnson AJ, Benková E, Friml J, Danzl JG. 2025. Super-resolution expansion microscopy in plant roots. The Plant Cell. 37(4), koaf006.
Gallei, Michelle C., et al. “Super-Resolution Expansion Microscopy in Plant Roots.” The Plant Cell, vol. 37, no. 4, koaf006, Oxford University Press, 2025, doi:10.1093/plcell/koaf006.
All files available under the following license(s):
Creative Commons Attribution 4.0 International Public License (CC-BY 4.0):
Main File(s)
File Name
2025_PlantCell_Gallei.pdf
53.90 MB
Access Level

Date Uploaded
2025-07-31
MD5 Checksum
9d3f8218ff37a29f29c48a7bbe831bd3
Export
Marked PublicationsOpen Data ISTA Research Explorer
Sources
PMID: 39792900
PubMed | Europe PMC