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首页> 外文期刊>Development Growth and Differentiation >Light-sheet microscopy-based 3D single-cell tracking reveals a correlation between cell cycle and the start of endoderm cell internalization in early zebrafish development
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Light-sheet microscopy-based 3D single-cell tracking reveals a correlation between cell cycle and the start of endoderm cell internalization in early zebrafish development

机译:基于光纸体显微镜的3D单细胞跟踪显示细胞周期与早期斑马发显中内胚层细胞内化之间的相关性

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Controlling the initiation of cell migration plays a fundamental role in shaping the tissue during embryonic development. During gastrulation in zebrafish, some mesendoderm cells migrate inward to form the endoderm as the innermost germ layer along the yolk syncytial layer. However, how the initiation of inward migration is regulated is poorly understood. In this study, we performed light-sheet microscopy-based 3D single-cell tracking consisting of (a) whole-embryo time-lapse imaging with light-sheet microscopy and (b) three-dimensional single cell tracking in the zebrafish gastrula in which cells are marked with histone H2A-mCherry (nuclei) and the sox17:EGFP transgene (expressed in endoderm cells). We analyzed the correlation between the timing of cell internalization and cell division. Most cells that differentiated into endoderm cells began to internalize during the first half of the cell cycle, where the length of a cell cycle was defined by the period between two successive cell divisions. By contrast, the timing of other internalized cells was not correlated with a certain phase of the cell cycle. These results suggest the possibility that cell differentiation is associated with the relationship between cell cycle progression and the start of internalization. Moreover, the 3D single-cell tracking approach is useful for further investigating how cell migration is integrated with cell proliferation to shape tissues in zebrafish embryos.
机译:在胚胎发育过程中,控制细胞迁移的起始对组织的形成起着至关重要的作用。在斑马鱼原肠胚形成过程中,一些中胚层细胞向内迁移,形成内胚层,作为卵黄合胞体层最内层的生殖层。然而,人们对外来移民的起源如何进行监管知之甚少。在这项研究中,我们进行了基于光片显微镜的三维单细胞追踪,包括(a)光片显微镜全胚胎延时成像和(b)斑马鱼原肠胚的三维单细胞追踪,其中细胞标记有组蛋白H2A mCherry(细胞核)和sox17:EGFP转基因(在内胚层细胞中表达)。我们分析了细胞内化时间和细胞分裂之间的相关性。大多数分化为内胚层细胞的细胞在细胞周期的前半段开始内化,其中细胞周期的长度由两次连续细胞分裂之间的时间决定。相比之下,其他内化细胞的时间与细胞周期的特定阶段无关。这些结果表明,细胞分化可能与细胞周期进展和内部化开始之间的关系有关。此外,3D单细胞追踪方法有助于进一步研究细胞迁移如何与细胞增殖相结合,从而形成斑马鱼胚胎中的组织。

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