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Real-time tracking of root hair nucleus morphodynamics using a microfluidic approach.

Singh G, Singh G, Pereira D, Baudrey S, Hoffmann E, Ryckelynck M, Asnacios A, Chabouté ME.

The Plant journal : for cell and molecular biology · 10 Oct 2021 · 10.1111/tpj.15511

Abstract

Root hairs (RHs) are tubular extensions of root epidermal cells that favour nutrient uptake and microbe interactions. RHs show a fast apical growth, constituting a unique single cell model system for analysing cellular morphodynamics. In this context, live cell imaging using microfluidics recently developed to analyze root development is appealing, although high-resolution imaging is still lacking to enable an investigation of the accurate spatiotemporal morphodynamics of organelles. Here, we provide a powerful coverslip based microfluidic device (CMD) that enables us to capture high resolution confocal imaging of Arabidopsis RH development with real-time monitoring of nuclear movement and shape changes. To validate the setup, we confirmed the typical RH growth rates and the mean nuclear positioning previously reported with classical methods. Moreover, to illustrate the possibilities offered by the CMD, we have compared the real-time variations in the circularity, area and aspect ratio of nuclei moving in growing and mature RHs. Interestingly, we observed higher aspect ratios in the nuclei of mature RHs, correlating with higher speeds of nuclear migration. This observation opens the way for further investigations of the effect of mechanical constraints on nuclear shape changes during RH growth and nuclear migration and its role in RH and plant development.

Code and data availability

The article describes a microfluidic device (CMD) and confocal imaging of root hair nuclei, but no public phenotype dataset, image collection, analysis code, or model deposit is identified. The data availability statement says all relevant data are within the manuscript and its supporting materials, with no authors' or

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