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Homotypic cell competition regulates proliferation and tiling of zebrafish pigment cells during colour pattern formation

机译:同型细胞竞争调节颜色模式形成期间斑马鱼色素细胞的增殖和平铺

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The adult striped pattern of zebrafish is composed of melanophores, iridophores and xanthophores arranged in superimposed layers in the skin. Previous studies have revealed that the assembly of pigment cells into stripes involves heterotypic interactions between all three chromatophore types. Here we investigate the role of homotypic interactions between cells of the same chromatophore type. Introduction of labelled progenitors into mutants lacking the corresponding cell type allowed us to define the impact of competitive interactions via long-term in vivo imaging. In the absence of endogenous cells, transplanted iridophores and xanthophores show an increased rate of proliferation and spread as a coherent net into vacant space. By contrast, melanophores have a limited capacity to spread in the skin even in the absence of competing endogenous cells. Our study reveals a key role for homotypic competitive interactions in determining number, direction of migration and individual spacing of cells within chromatophore populations.
机译:斑马鱼的成年条纹图案由黑色素基团,虹膜基团和黄素基团组成,它们排列在皮肤上。先前的研究表明,色素细胞组装成条纹涉及所有三种色谱类型之间的异型相互作用。在这里,我们研究同种类型的细胞之间同型相互作用的作用。将标记的祖细胞引入缺乏相应细胞类型的突变体中,使我们能够通过长期体内成像来确定竞争性相互作用的影响。在没有内源性细胞的情况下,移植的虹膜和黄体细胞显示出增加的增殖速率,并以连贯的网状形式散布到空的空间中。相反,即使没有竞争性内源细胞,黑素细胞在皮肤中的扩散能力也有限。我们的研究揭示了同型竞争相互作用在确定染色体群体内细胞的数量,迁移方向和细胞个体间距方面的关键作用。

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