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Why and how the nematode's early embryogenesis can be precise and robust: a mechanical perspective

机译:线虫早期胚胎发生的原因和如何精确且鲁棒:机械视角

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The early embryogenesis in the nematode Caenorhabditis elegans is well-known for its stereotypic precision of cell arrangements and their lineage relationship. Much research has been focused on how biochemical processes achieve the highly reproducible cell lineage tree. However, the origin of the robustness in the cell arrangements is poorly understood. Here, we set out to provide a mechanistic explanation of how combining mechanical forces with the order and orientation of cell division ensures a robust arrangement of cells. We used a simplified mechanical model to simulate the arrangement of cells in the face of different disturbances. As a result, we revealed three fail-safe principles for cell self-organization in early nematode embryogenesis: ordering, simultaneity, and the division orientation of cell division events. Our work provides insight into the developmental strategy and contributes to the understanding of how robust or variable the cell arrangement can be in developing embryos.
机译:Nematode Caenorhabdise秀丽隐杆线虫的早期胚胎发生,以其对细胞布置的陈规定型精度及其谱系关系而闻名。许多研究一直专注于生物化学过程如何实现高度可重复的细胞谱系树。然而,细胞安排中的鲁棒性的起源很难理解。这里,我们开始提供一种机械解释,如何将机械力与细胞划分的顺序和方向相结合,确保了细胞的稳健布置。我们使用了简化的机械模型来模拟细胞的布置在不同的干扰面上。结果,我们在早期的线虫胚胎发生中揭示了细胞自组织的三项故障安全原理:订购,同时性和细胞划分事件的分区取向。我们的工作提供了对发展战略的洞察力,并有助于了解细胞安排可以在开发胚胎中的鲁棒性或变量。

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