bioRxiv · 10.1101/2025.05.08.652794
3D X-ray microscopy lights up nanoparticles in plants
Abstract
The discovery of novel plant fertilization strategies heavily relies on our capabilities to probe physiological processes in living plants with sub-cellular precision. State-of-the-art microscopy techniques are in general limited to surface investigation or they require elaborated tissue preparation and often destruction. X-ray microscopy has the potential to resolve some of these limitations by generating micro-to nanometer-scale 3D images deep into the tissue. We introduce experimental designs and the quantitative analysis methodologies, pioneering nanoscale ({approx}150 nm resolution) in-vivo 3D microscopy of plant tissue. We show the first direct in-vivo visualization of foliar-applied untagged nanoparticulate fertilizers deep under the leaf surface, not accessible by other microscopy methods. Ultimately, our approach provides the means for a direct observation of nanoparticle transport and dissolution in living plant tissue, a step critical for developing sustainable plant fertilization approaches.
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Kristensen, E. V., Siracusa, F., Pinna, A., Ertem, I., Szameitat, A., Villanova, J., Gao, X., Schiefler, A., Tobler, D. J., Ghoshal, S., Husted, S., Mokso, R.. 2025-05-11. 3D X-ray microscopy lights up nanoparticles in plants. https://doi.org/10.1101/2025.05.08.652794
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