In bony fishes, patterning of the vertebral column, or spine, is guided by a metameric blueprint established in the notochord sheath. Notochord segmentation begins days after somitogenesis concludes and can occur in its absence. However, somite patterning defects lead to imprecise notochord segmentation, suggesting that these processes are linked. Here, we identify that interactions between the notochord and the axial musculature ensure precise spatiotemporal segmentation of the zebrafish spine. We demonstrate that myoseptum-notochord linkages drive notochord segment initiation by locally deforming the notochord extracellular matrix and recruiting focal adhesion machinery at these contact points. Irregular somite patterning alters this mechanical signaling, causing non-sequential and dysmorphic notochord segmentation, leading to altered spine development. Using a model that captures myoseptum-notochord interactions, we find that a fixed spatial interval is critical for driving sequential segment initiation. Thus, mechanical coupling of axial tissues facilitates spatiotemporal spine patterning.
Notochord segmentation in zebrafish controlled by iterative mechanical signaling.
斑马鱼脊索分节受迭代机械信号控制
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作者:Wopat Susan, Adhyapok Priyom, Daga Bijoy, Crawford Janice M, Norman James, Bagwell Jennifer, Peskin Brianna, Magre Indrasen, Fogerson Stephanie M, Levic Daniel S, Di Talia Stefano, Kiehart Daniel P, Charbonneau Patrick, Bagnat Michel
| 期刊: | Developmental Cell | 影响因子: | 8.700 |
| 时间: | 2024 | 起止号: | 2024 Jul 22; 59(14):1860-1875 |
| doi: | 10.1016/j.devcel.2024.04.013 | 研究方向: | 信号转导 |
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