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Four-dimensional imaging with virtual reality to quantitatively explore jigsaw puzzle-like morphogenesis of Arabidopsis cotyledon pavement cells

机译:具有虚拟现实的四维成像定量探索拟南芥子叶路面细胞的竖锯益智形态发生

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摘要

In most dicotyledonous plants, leaf pavement cells exhibit complex jigsaw puzzle-like cell morphogenesis during leaf expansion. Although detailed molecular biological information and mathematical modeling of this jigsaw puzzle-like cell morphogenesis are now available, a full understanding of this process remains elusive. Recent reports have highlighted the importance of three-dimensional (3D) structures (i.e., anticlinal and periclinal cell wall) in understanding the mechanical models that describe this morphogenetic process. We believe that it is important to acquire 3D shapes of pavement cells over time, i.e., acquire and analyze four-dimensional (4D) information when studying the relationship between mechanical modeling and simulations and the actual cell shape. In this report, we have developed a framework to capture and analyze 4D morphological information of Arabidopsis thaliana cotyledon pavement cells by using both direct water immersion observations and computational image analyses, including segmentation, surface modeling, virtual reality and morphometry. The 4D cell models allowed us to perform time-lapse 3D morphometrical analysis, providing detailed quantitative information about changes in cell growth rate and shape, with cellular complexity observed to increase during cell growth. The framework should enable analysis of various phenotypes (e.g., mutants) in greater detail, especially in the 3D deformation of the cotyledon surface, and evaluation of theoretical models that describe pavement cell morphogenesis using computational simulations. Additionally, our accurate and high-throughput acquisition of growing cell structures should be suitable for use in generating in silico model cell structures.
机译:在大多数双象状植物中,叶面路面细胞在叶片膨胀期间表现出络合物拼图样细胞形态发生。虽然现在可以提供详细的分子生物学信息和这种拼图样细胞形态发生的数学建模,但充分了解这一过程仍然难以捉摸。最近的报告突出了三维(3D)结构(即,斜线和垂直细胞壁)了解描述这种形态发生过程的机械模型的重要性。我们认为,在研究机械建模和模拟与实际细胞形状时,可以随着时间的推移获得3D形状的路面单元,即获取和分析四维(4D)信息。在本报告中,我们制定了一种框架,通过使用直接水浸没观察和计算图像分析,包括分割,表面建模,虚拟现实和形态学,捕获和分析拟南芥拟南芥路面路面路面细胞的4D形态信息。 4D细胞模型使我们能够进行延时3D形式分析,提供关于细胞生长速率和形状变化的详细定量信息,观察到细胞复杂性在细胞生长期间增加。该框架应更详细地使各种表型(例如,突变体)进行分析,特别是在子叶表面的3D变形中,以及使用计算模拟描述路面细胞形态发生的理论模型的评估。此外,我们的准确性和高通量采集的生长细胞结构应适用于在硅模型细胞结构中产生。

著录项

  • 期刊名称 Plant Biotechnology
  • 作者

    Takumi Higaki; Hidenobu Mizuno;

  • 作者单位
  • 年(卷),期 2020(37),4
  • 年度 2020
  • 页码 429–435
  • 总页数 7
  • 原文格式 PDF
  • 正文语种
  • 中图分类 应用微生物学;
  • 关键词

    机译:4D成像;细胞形态学;图像分析;拼图游戏状细胞形态发生;虚拟现实;
  • 入库时间 2022-08-21 12:28:13

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