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In situ measurement of cell stiffness of Arabidopsis roots growing on a glass micropillar support by atomic force microscopy
Authors:Eri Akita  Yaxiaer Yalikun  Kazunori Okano  Yuki Yamasaki  Misato Ohtani  Yo Tanaka  Taku Demura  Yoichiroh Hosokawa
Institution:1.Division of Materials Science, Nara Institute of Science and Technology, Nara 630-0192, Japan;2.Division of Biological Science, Nara Institute of Science and Technology, Nara 630-0192, Japan;3.Graduate School of Frontier Sciences, The University of Tokyo, Chiba 277-8561, Japan;4.Center for Biosystems Dynamics Research, RIKEN, Osaka 565-0871, Japan
Abstract:Atomic force microscopy (AFM) can measure the mechanical properties of plant tissue at the cellular level, but for in situ observations, the sample must be held in place on a rigid support and it is difficult to obtain accurate data for living plants without inhibiting their growth. To investigate the dynamics of root cell stiffness during seedling growth, we circumvented these problems by using an array of glass micropillars as a support to hold an Arabidopsis thaliana root for AFM measurements without inhibiting root growth. The root elongated in the gaps between the pillars and was supported by the pillars. The AFM cantilever could contact the root for repeated measurements over the course of root growth. The elasticity of the root epidermal cells was used as an index of the stiffness. By contrast, we were not able to reliably observe roots on a smooth glass substrate because it was difficult to retain contact between the root and the cantilever without the support of the pillars. Using adhesive to fix the root on the smooth glass plane overcame this issue, but prevented root growth. The glass micropillar support allowed reproducible measurement of the spatial and temporal changes in root cell elasticity, making it possible to perform detailed AFM observations of the dynamics of root cell stiffness.
Keywords:atomic force microscopy  cell elasticity  force measurement  micro glass device
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