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Multicolor lineage tracing using in vivo time-lapse imaging reveals coordinated death of clonally related cells in the developing vertebrate brain

机译:使用体内延时成像的多色谱系追踪揭示了肿瘤脑中克隆相关细胞的协调死亡

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The global mechanisms that regulate and potentially coordinate cell proliferation & death in developing neural regions are not well understood. In particular, it is not clear how or whether clonal relationships between neural progenitor cells and their progeny influence the growing brain. We have developed an approach using Brainbow in the developing zebrafish to visualize and follow multiple clones of related cells in vivo over time. This allows for clear visualization of many dividing clones of cells, deep in proliferating brain regions. As expected, in addition to undergoing interkinetic nuclear migration and cell division, cells also periodically undergo apoptosis. Interestingly, cell death occurs in a non-random manner clonally related cells are more likely to die in a progressive fashion than cells from different clones. Multiple members of an individual clone die while neighboring clones appear healthy and continue to divide. Our results suggest that clonal relationships can influence cellular fitness and survival in the developing nervous system, perhaps through a competitive mechanism whereby clones of cells are competing with other clones. Clonal cell competition may help regulate neuronal proliferation in the vertebrate brain.
机译:监管和潜在坐标细胞增殖和死亡在开发神经区域中的全球机制尚不清楚。特别是,目前尚不清楚神经祖细胞和它们的后代之间的克隆关系如何或者对生长的大脑影响。我们开发了一种在开发斑马鱼中使用Brainbow的方法,以便随着时间的推移在体内可视化和遵循多种相关细胞的克隆。这允许在增殖脑区的深深的细胞中清晰可视化。如预期的,除了经历互际核迁移和细胞分裂外,细胞还定期进行细胞凋亡。有趣的是,细胞死亡以非随机的方式发生克隆方式,在不同克隆的细胞比细胞更容易死于渐进式的细胞。单个克隆的多个成员,而邻近克隆的同时出现健康并继续分裂。我们的研究结果表明,克隆关系可以影响发展神经系统中的细胞健康和生存,也许通过竞争机制,即细胞克隆与其他克隆竞争。克隆细胞竞争可能有助于调节脊椎动物中的神经元增殖。

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