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Single-cell and spatial transcriptomics reveal somitogenesis in gastruloids

机译:单细胞和空间转录组织揭示了美食中的四肢细胞生成

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摘要

Single-cell RNA sequencing and spatial transcriptomics reveal that the somitogenesis clock is active in mouse gastruloids, which can be induced to generate somites with the correct rostral-caudal patterning.Gastruloids are three-dimensional aggregates of embryonic stem cells that display key features of mammalian development after implantation, including germ-layer specification and axial organization(1-3). To date, the expression pattern of only a small number of genes in gastruloids has been explored with microscopy, and the extent to which genome-wide expression patterns in gastruloids mimic those in embryos is unclear. Here we compare mouse gastruloids with mouse embryos using single-cell RNA sequencing and spatial transcriptomics. We identify various embryonic cell types that were not previously known to be present in gastruloids, and show that key regulators of somitogenesis are expressed similarly between embryos and gastruloids. Using live imaging, we show that the somitogenesis clock is active in gastruloids and has dynamics that resemble those in vivo. Because gastruloids can be grown in large quantities, we performed a small screen that revealed how reduced FGF signalling induces a short-tail phenotype in embryos. Finally, we demonstrate that embedding in Matrigel induces gastruloids to generate somites with the correct rostral-caudal patterning, which appear sequentially in an anterior-to-posterior direction over time. This study thus shows the power of gastruloids as a model system for exploring development and somitogenesis in vitro in a high-throughput manner.
机译:单细胞RNA测序和空间转录组织揭示了OMITOUSENACE时钟在小鼠海胃醛固醇中活跃,可以诱导具有正确的脊髓柱尾部的胚胎胚胎图案的躯体胚胎干细胞的三维聚集体,显示哺乳动物的关键特征植入后的发展,包括种子层规格和轴向组织(1-3)。迄今为止,已经用显微镜探讨了仅少量少量基因的表达模式,并且具有显微镜的程度,胚胎含量的基因组表达模式模仿胚胎中的程度尚不清楚。在这里,我们使用单细胞RNA测序和空间转录组物将小鼠海胃醛与小鼠胚胎进行比较。我们鉴定以前未知的各种胚胎细胞类型存在于腹状中,并且表明同学的关键调节因子在胚胎和海胃醛之间表达。使用实时成像,我们表明OMITOUNCERING SCHOWS活跃在胃纤维素中,并且具有类似于体内的动态。因为海胃醛可以大量生长,我们进行了一个小屏幕,揭示了FGF信号传导的减少诱导胚胎中的短尾表型。最后,我们证明嵌入Matrigel诱导腹状物质以产生具有正确的升腔 - 尾部图案的伙伴,其在前后方向上依次出现。因此,该研究表明了胃抑制作为探索开发和体会的模型系统的高吞吐量。

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  • 来源
    《Nature》 |2020年第7812期|405-409|共5页
  • 作者单位

    KNAW Royal Netherlands Acad Arts & Sci Hubrecht Inst Oncode Inst Utrecht Netherlands|Univ Med Ctr Utrecht Utrecht Netherlands;

    KNAW Royal Netherlands Acad Arts & Sci Hubrecht Inst Oncode Inst Utrecht Netherlands|Univ Med Ctr Utrecht Utrecht Netherlands;

    KNAW Royal Netherlands Acad Arts & Sci Hubrecht Inst Oncode Inst Utrecht Netherlands|Univ Med Ctr Utrecht Utrecht Netherlands;

    Univ Cambridge Dept Genet Cambridge England;

    KNAW Royal Netherlands Acad Arts & Sci Hubrecht Inst Oncode Inst Utrecht Netherlands|Univ Med Ctr Utrecht Utrecht Netherlands;

    KNAW Royal Netherlands Acad Arts & Sci Hubrecht Inst Oncode Inst Utrecht Netherlands|Univ Med Ctr Utrecht Utrecht Netherlands;

    Univ Cambridge Dept Genet Cambridge England;

    Univ Cambridge Wellcome Trust Med Res Council Cambridge Stem Cel Cambridge England|Univ Cambridge Dept Physiol Dev & Neurosci Cambridge England;

    Univ Med Ctr Utrecht Utrecht Netherlands|KNAW Royal Netherlands Acad Arts & Sci Hubrecht Inst Utrecht Netherlands;

    Univ Cambridge Dept Genet Cambridge England;

    KNAW Royal Netherlands Acad Arts & Sci Hubrecht Inst Oncode Inst Utrecht Netherlands|Univ Med Ctr Utrecht Utrecht Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:15:25

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