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SEGGA: a toolset for rapid automated analysis of epithelial cell polarity and dynamics

机译:Segga:一种快速自动分析上皮细胞极性和动力学的工具集

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Epithelial remodeling determines the structure of many organs in the body through changes in cell shape, polarity and behavior and is a major area of study in developmental biology. Accurate and high-throughput methods are necessary to systematically analyze epithelial organization and dynamics at single-cell resolution. We developed SEGGA, an easy-to-use software for automated image segmentation, cell tracking and quantitative analysis of cell shape, polarity and behavior in epithelial tissues. SEGGA is free, open source, and provides a full suite of tools that allow users with no prior computational expertise to independently perform all steps of automated image segmentation, semi-automated user-guided error correction, and data analysis. Here we use SEGGA to analyze changes in cell shape, cell interactions and planar polarity during convergent extension in the Drosophila embryo. These studies demonstrate that planar polarity is rapidly established in a spatiotemporally regulated pattern that is dynamically remodeled in response to changes in cell orientation. These findings reveal an unexpected plasticity that maintains coordinated planar polarity in actively moving populations through the continual realignment of cell polarity with the tissue axes.
机译:上皮重塑通过细胞形状,极性和行为的变化来确定身体中许多器官的结构,是发展生物学的主要研究领域。准确和高通量的方法是在单细胞分辨率下系统地分析上皮组织和动态的必要条件。我们开发了Segga,这是一种易于使用的软件,用于自动图像分割,细胞跟踪和细胞形状,极性和上皮组织行为的定量分析。 Segga是免费的,开源,并提供全套工具,允许用户无需现有的计算专业知识来独立地执行自动图像分割,半自动用户引导纠错和数据分析。在这里,我们使用Segga分析果蝇胚胎中会聚延伸期间细胞形状,细胞相互作用和平面极性的变化。这些研究表明,以时尚常规调节的图案迅速建立平面极性,其响应于细胞取向的变化而动态地改造。这些发现揭示了一种意想不到的可塑性,通过与组织轴的细胞极性的连续重新调整,在积极的移动群体中保持协调的平面极性。

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