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3DCellAtlas Meristem: a tool for the global cellular annotation of shoot apical meristems

机译:3DCellAtlas Meristem:用于茎顶分生组织的全球细胞注释的工具

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Modern imaging approaches enable the acquisition of 3D and 4D datasets capturing plant organ development at cellular resolution. Computational analyses of these data enable the digitization and analysis of individual cells. In order to fully harness the information encoded within these datasets, annotation of the cell types within organs may be performed. This enables data points to be placed within the context of their position and identity, and for equivalent cell types to be compared between samples. The shoot apical meristem (SAM) in plants is the apical stem cell niche from which all above ground organs are derived. We developed 3DCellAtlas Meristem which enables the complete cellular annotation of all cells within the SAM with up to 96% accuracy across all cell types in Arabidopsis and 99% accuracy in tomato SAMs. Successive layers of cells are identified along with the central stem cells, boundary regions, and layers within developing primordia. Geometric analyses provide insight into the morphogenetic process that occurs during these developmental processes. Coupling these digital analyses with reporter expression will enable multidimensional analyses to be performed at single cell resolution. This provides a rapid and robust means to perform comprehensive cellular annotation of plant SAMs and digital single cell analyses, including cell geometry and gene expression. This fills a key gap in our ability to analyse and understand complex multicellular biology in the apical plant stem cell niche and paves the way for digital cellular atlases and analyses.Electronic supplementary materialThe online version of this article (10.1186/s13007-019-0413-0) contains supplementary material, which is available to authorized users.
机译:现代成像方法可以采集3D和4D数据集,以细胞分辨率捕获植物器官发育。这些数据的计算分析使单个细胞的数字化和分析成为可能。为了充分利用这些数据集中编码的信息,可以对器官内的细胞类型进行注释。这使数据点可以放置在其位置和标识的上下文中,并且可以在样本之间比较等效的细胞类型。植物中的茎尖分生组织(SAM)是根茎干细胞的利基,所有地上器官都来自该茎干。我们开发了3DCellAtlas Meristem,可对SAM中的所有细胞进行完整的细胞注释,其中拟南芥中所有细胞类型的准确度高达96%,而番茄SAMs中的准确度高达99%。连续的细胞层与中央干细胞,边界区域和发育中的原基内的层一起被鉴定。几何分析可以洞悉这些发育过程中发生的形态发生过程。将这些数字分析与报告表达结合起来,将能够以单细胞分辨率进行多维分析。这为执行植物SAM的全面细胞注释和数字单细胞分析(包括细胞几何结构和基因表达)提供了一种快速而强大的方法。这填补了我们分析和理解根尖植物干细胞生态位中复杂的多细胞生物学能力的关键空白,并为数字细胞地图集和分析铺平了道路。电子补充材料本文的在线版本(10.1186 / s13007-019-0413- 0)包含补充材料,授权用户可以使用。

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