Visualising Physcomitrium patens protoplasts with full‐rotation soft X‐ray tomography

Abstract Soft X‐ray tomography (SXT) is a label‐free, high‐resolution imaging modality that is optimal for 3D visualisation of whole hydrated cells. Although SXT has been extensively used to study remodelling in more than 130 mammalian cell lines, its application to plants remains largely unexplored. In this study, we present the first approach at full‐rotation SXT imaging of spreading earthmoss P. patens , which is a key model organism for studying plant cell architecture and developmental processes. We show that high‐resolution, three‐dimensional imaging of fully hydrated P. patens protoplasts enable visualisation of organelle morphology and distribution. These proof‐of‐concept results demonstrate the potential of SXT to capture ultrastructural changes in plant cells, depending on developmental cues, stress responses, and genotype‐dependent variation.

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Publication Details

Journal
Journal of Microscopy
Published
2026-10-07
DOI
https://doi.org/10.1111/jmi.70164
Primary Topic
Advanced X-ray Imaging Techniques
Type
article
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article

Visualising Physcomitrium patens protoplasts with full‐rotation soft X‐ray tomography

Stefanie J. Müller‐Schüssele, Venera Weinhardt, Sadia S. Tamanna, Fariha Mahzabin Annesha et al.
Journal of Microscopy
Advanced X-ray Imaging Techniques
article

Visualising Physcomitrium patens protoplasts with full‐rotation soft X‐ray tomography

Stefanie J. Müller‐Schüssele, Venera Weinhardt, Sadia S. Tamanna, Fariha Mahzabin Annesha, Katharina Grasser
article en

Abstract

Abstract Soft X‐ray tomography (SXT) is a label‐free, high‐resolution imaging modality that is optimal for 3D visualisation of whole hydrated cells. Although SXT has been extensively used to study remodelling in more than 130 mammalian cell lines, its application to plants remains largely unexplored. In this study, we present the first approach at full‐rotation SXT imaging of spreading earthmoss P. patens , which is a key model organism for studying plant cell architecture and developmental processes. We show that high‐resolution, three‐dimensional imaging of fully hydrated P. patens protoplasts enable visualisation of organelle morphology and distribution. These proof‐of‐concept results demonstrate the potential of SXT to capture ultrastructural changes in plant cells, depending on developmental cues, stress responses, and genotype‐dependent variation.

Journal of Microscopy
Karlsruhe Institute of Technology (DE), University of Kaiserslautern (DE), Heidelberg University (DE), Kerntechnische Entsorgung Karlsruhe (Germany) (DE), University of Applied Sciences Kaiserslautern (DE)
Openalex Percentile: Top 13%
Advanced X-ray Imaging Techniques
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Visualising Physcomitrium patens protoplasts with full‐rotation soft X‐ray tomography — Stefanie J. Müller‐Schüssele, Venera Weinhardt, et al. · Journal of Microscopy (2026) | TGRS Research Map | TGRS