Unverified paper record
Simultaneous quantification of cell wall elasticity and turgor pressure in live plant cells by elastic shell theory analysis and AFM
Planta · 8 May 2025 · 10.1007/s00425-025-04683-4
Abstract
Main conclusion Our method can simultaneously quantify cell wall elasticity and turgor pressure of live plant cells through AFM measurements and calculations based on elastic shell theory. Abstract The morphological behavior of plant cells depends on their mechanical properties. Cell wall elasticity ( E ) and turgor pressure ( P ) are main factors that dominate the behavior. A method to simultaneously quantify them in live cells has yet to be established, hindering progress in plant mechanobiology. Recently, atomic force microscopy (AFM) has been used to analyze single cells based on Hertz’s contact theory (HCT). However, HCT cannot evaluate P . Several groups have attempted to evaluate P by adapting elastic shell theory (EST), but it is still difficult to estimate both E and P from the indentation data and EST alone. Herein an analytical method is proposed based on EST using the cell indentation and surface geometry from the AFM measurements. We also demonstrate the reliability of our approach under various osmotic pressure conditions and simultaneously determine the values of P and E in epidermal monolayer cells of an Allium cepa L. Supplementary Information The online version contains supplementary material available at 10.1007/s00425-025-04683-4.
Plant phenotyping relevance
AFM測定と弾性殻理論に基づき、生細胞の細胞壁弾性と膨圧を定量する解析手法を開発し、浸透圧条件下で信頼性を検証しており、植物表現型取得が研究の中心です。
abstractOur method can simultaneously quantify cell wall elasticity and turgor pressure of live plant cells through AFM measurements and calculations based on elastic shell theory.
abstractHerein an analytical method is proposed based on EST using the cell indentation and surface geometry from the AFM measurements.
abstractWe also demonstrate the reliability of our approach under various osmotic pressure conditions and simultaneously determine the values of P and E in epidermal monolayer cells of an Allium cepa L.
Code and data availability
The paper reports AFM topography and indentation measurements of onion epidermal cells analyzed via elastic shell theory, but no public dataset, code repository, or trained model is deposited. The Data availability statement explicitly restricts derived data to on-request access from the corresponding author, so the AF
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