Dynamic apico-basal enrichment of the F-actin during cytokinesis in Arabidopsis cells embedded in their tissues.

Alexis Lebecq, Aurélie Fangain, Alice Boussaroque, Marie-Cécile Caillaud
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引用次数: 5

Abstract

Cell division is a tightly regulated mechanism, notably in tissues where malfunctions can lead to tumour formation or developmental defects. This is particularly true in land plants, where cells cannot relocate and therefore cytokinesis determines tissue topology. In plants, cell division is executed in radically different manners than in animals, with the appearance of new structures and the disappearance of ancestral mechanisms. Whilst F-actin and microtubules closely co-exist, recent studies mainly focused on the involvement of microtubules in this key process. Here, we used a root tracking system to image the spatio-temporal dynamics of both F-actin reporters and cell division markers in dividing cells embedded in their tissues. In addition to the F-actin accumulation at the phragmoplast, we observed and quantified a dynamic apico-basal enrichment of F-actin from the prophase/metaphase transition until the end of the cytokinesis.

拟南芥组织内细胞分裂过程中f -肌动蛋白的动态顶基富集。
细胞分裂是一种受到严格调控的机制,特别是在组织中,功能障碍可能导致肿瘤形成或发育缺陷。在陆地植物中尤其如此,细胞不能重新定位,因此细胞分裂决定了组织的拓扑结构。在植物中,细胞分裂的方式与动物完全不同,新结构的出现和原始机制的消失。虽然f -肌动蛋白和微管密切共存,但最近的研究主要集中在微管参与这一关键过程。在这里,我们使用根跟踪系统来成像f -肌动蛋白报告蛋白和细胞分裂标记物在组织内嵌入的分裂细胞中的时空动态。除了在片质体中积累f -肌动蛋白外,我们还观察并量化了从前期/中期过渡到细胞质分裂结束时f -肌动蛋白的动态顶基富集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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