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使用微流控方法实时跟踪根毛细胞核形态动力学。

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

机构信息

Institut de biologie moléculaire des plantes, CNRS, Université de Strasbourg, Strasbourg, 67084, France.

Laboratoire Matière et Systèmes Complexes, UMR 7057, CNRS et Université de Paris, Paris, 75013, France.

出版信息

Plant J. 2021 Oct;108(2):303-313. doi: 10.1111/tpj.15511. Epub 2021 Oct 10.

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.

摘要

根毛(RHs)是根表皮细胞的管状延伸,有利于营养物质的吸收和微生物的相互作用。RHs 表现出快速的顶端生长,构成了一个独特的单细胞模型系统,用于分析细胞形态动力学。在这方面,最近开发的使用微流控技术的活细胞成像方法很有吸引力,尽管仍然缺乏高分辨率成像来实现对细胞器的准确时空形态动力学的研究。在这里,我们提供了一种强大的基于盖玻片的微流控装置(CMD),使我们能够对拟南芥 RH 发育进行高分辨率共聚焦成像,并实时监测核的运动和形状变化。为了验证该设置,我们证实了典型的 RH 生长速率和以前用经典方法报道的核定位的平均值。此外,为了说明 CMD 提供的可能性,我们比较了在生长和成熟 RH 中移动的核的圆形度、面积和纵横比的实时变化。有趣的是,我们观察到成熟 RH 中的核具有更高的纵横比,这与核迁移速度的增加有关。这一观察结果为进一步研究机械约束对 RH 生长和核迁移过程中核形状变化的影响及其在 RH 和植物发育中的作用开辟了道路。

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