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时间对齐的沙漏式原肠胚形成模型在兔和鼠中。

Time-aligned hourglass gastrulation models in rabbit and mouse.

机构信息

Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot, Israel.

Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot, Israel; Department of Computer Science and Applied Mathematics, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Cell. 2023 Jun 8;186(12):2610-2627.e18. doi: 10.1016/j.cell.2023.04.037. Epub 2023 May 19.

Abstract

The hourglass model describes the convergence of species within the same phylum to a similar body plan during development; however, the molecular mechanisms underlying this phenomenon in mammals remain poorly described. Here, we compare rabbit and mouse time-resolved differentiation trajectories to revisit this model at single-cell resolution. We modeled gastrulation dynamics using hundreds of embryos sampled between gestation days 6.0 and 8.5 and compared the species using a framework for time-resolved single-cell differentiation-flows analysis. We find convergence toward similar cell-state compositions at E7.5, supported by the quantitatively conserved expression of 76 transcription factors, despite divergence in surrounding trophoblast and hypoblast signaling. However, we observed noticeable changes in specification timing of some lineages and divergence of primordial germ cell programs, which in the rabbit do not activate mesoderm genes. Comparative analysis of temporal differentiation models provides a basis for studying the evolution of gastrulation dynamics across mammals.

摘要

沙漏模型描述了同一门的物种在发育过程中趋同到相似的身体形态;然而,哺乳动物中这一现象的分子机制仍描述不足。在这里,我们比较了兔子和老鼠的时间分辨分化轨迹,以单细胞分辨率重新审视这一模型。我们使用数百个在妊娠第 6.0 天至第 8.5 天之间取样的胚胎来模拟原肠胚形成动力学,并使用时间分辨单细胞分化流分析的框架比较了这些物种。尽管周围滋养层和下胚层信号存在分歧,但我们发现 E7.5 时细胞状态组成趋同,这得到了 76 个转录因子定量保守表达的支持。然而,我们观察到一些谱系的特化时间发生了明显变化,原始生殖细胞程序也出现了分歧,在兔子中,这些程序不激活中胚层基因。时间分辨分化模型的比较分析为研究哺乳动物原肠胚形成动力学的进化提供了基础。

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