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Guard Cell Microfilament Analyzer Facilitates the Analysis of the Organization and Dynamics of Actin Filaments in Arabidopsis Guard Cells

机译:防护细胞微丝分析仪有助于分析拟南芥保护细胞肌动蛋白长丝的组织和动态

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摘要

The actin cytoskeleton is involved in regulating stomatal movement, which forms distinct actin arrays within guard cells of stomata with different apertures. How those actin arrays are formed and maintained remains largely unexplored. Elucidation of the dynamic behavior of differently oriented actin filaments in guard cells will enhance our understanding in this regard. Here, we initially developed a program called ‘guard cell microfilament analyzer’ (GCMA) that enables the selection of individual actin filaments and analysis of their orientations semiautomatically in guard cells. We next traced the dynamics of individual actin filaments and performed careful quantification in open and closed stomata. We found that de novo nucleation of actin filaments occurs at both dorsal and ventral sides of guard cells from open and closed stomata. Interestingly, most of the nucleated actin filaments elongate radially and longitudinally in open and closed stomata, respectively. Strikingly, radial filaments tend to form bundles whereas longitudinal filaments tend to be removed by severing and depolymerization in open stomata. By contrast, longitudinal filaments tend to form bundles that are severed less frequently in closed stomata. These observations provide insights into the formation and maintenance of distinct actin arrays in guard cells in stomata of different apertures.
机译:肌动蛋白细胞骨架涉及调节气孔运动,其在具有不同孔的气孔的防护细胞内形成不同的肌动蛋白阵列。如何形成和维护那些actin阵列仍然很大程度上是未开发的。阐明防护细胞中不同导向的肌动蛋白长丝的动态行为将在这方面提升我们的理解。在这里,我们最初开发了一种名为“Guard Cell微丝分析仪”(GCMA)的程序,其能够在保护细胞中结半型肌动蛋白细丝并分析它们的方向。我们接下来追溯了个体肌动蛋白长丝的动态,并在开放和闭孔中进行仔细量化。我们发现,肌动蛋白长丝的De Novo成核在保护细胞的两侧和腹侧侧面的两侧发生。有趣的是,大多数成核肌动蛋白长丝分别在开放和闭孔中径向和纵向伸长。尖锐的是,径向长丝倾向于形成束,而纵向长丝倾向于通过在开放的气孔中切断和解聚。相比之下,纵向长丝倾向于形成封闭束,封闭口腔闭合口腔较差。这些观察结果提供了在不同孔径的气孔中的防护细胞中形成和维护的洞察。

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