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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:保卫细胞微丝分析仪有助于分析拟南芥保卫细胞中肌动蛋白丝的组织和动力学

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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:肌动蛋白细胞骨架参与调节气孔运动,气孔运动在具有不同孔径的气孔保卫细胞内形成不同的肌动蛋白阵列。那些肌动蛋白阵列如何形成和维持很大程度上尚待探索。对保卫细胞中不同取向的肌动蛋白丝的动态行为的阐明将增强我们对此的理解。在这里,我们最初开发了一个名为“保卫细胞微丝分析仪”(GCMA)的程序,该程序可以选择单个肌动蛋白丝并在保卫细胞中半自动分析其方向。接下来,我们追踪了单个肌动蛋白丝的动力学,并对开放和闭合气孔进行了仔细的定量。我们发现肌动蛋白丝的从头成核发生在开放和闭合气孔的保卫细胞的背侧和腹侧。有趣的是,大多数有核肌动蛋白丝分别在开放和闭合气孔中径向和纵向伸长。令人惊讶的是,放射状的细丝倾向于形成束,而纵向的细丝则倾向于通过开放气孔中的切断和解聚而去除。相比之下,纵向细丝往往会形成束,这些束在闭合的​​气孔中不那么频繁地被切断。这些观察提供了洞察不同孔的气孔保卫细胞中不同肌动蛋白阵列的形成和维持的见识。

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