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Live fate-mapping of joint-associated fibroblasts visualizes expansion of cell contributions during zebrafish fin regeneration

机译:关节相关成纤维细胞的实时命运映射可视化斑马鱼翅片再生期间细胞贡献的扩张

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摘要

The blastema is a mass of progenitor cells responsible for regeneration of amputated salamander limbs and fish fins. Previous studies have indicated that resident cell sources producing the blastema contribute lineage-restricted progeny to regenerating tissue. However, these studies have labeled general cell types rather than granular cell subpopulations, and they do not explain the developmental transitions that must occur for distal structures to arise from cells with proximal identities in the appendage stump. Here, we find that regulatory sequences of tph1b, which encodes an enzyme that synthesizes serotonin, mark a subpopulation of fibroblast-like cells restricted to the joints of uninjured adult zebrafish fins. Amputation stimulates serotonin production in regenerating fin fibroblasts, yet targeted tph1b mutations abrogating this response do not disrupt fin regeneration. In uninjured animals, tph1b-expressing cells contribute fibroblast progeny that remain restricted to joints throughout life. By contrast, upon amputation, tph1b(+) joint cells give rise to fibroblasts that distribute across the entire lengths of regenerating fin rays. Our experiments visualize and quantify how incorporation into an appendage blastema broadens the progeny contributions of a cellular subpopulation that normally has proximodistal restrictions.
机译:Blastema是负责截肢蝾螈四肢和鱼鳍再生的祖细胞的质量。以前的研究表明,产生BLASTEMA的驻留细胞源将有助于改造组织的谱系限制的后代。然而,这些研究已经标记了一般细胞类型而不是颗粒细胞群,并且它们不解释必须发生的发育过渡,以便远端结构产生与附属树桩中的近端标识的细胞产生。在这里,我们发现编码合成血清素的酶的TPH1B的调节序列标记了成纤维细胞样细胞的亚群,限制在未加注的成人斑马鱼翅片的关节上。截肢刺激再生翅片成纤维细胞中的血清素产生,然而靶向TPH1B突变,消除该反应不会破坏翅片再生。在未加注的动物中,TPH1B的表达细胞有助于成纤维细胞后代,其仍然限于寿命期间的关节。相反,在截肢时,TPH1B(+)关节细胞产生分布在整个再生鳍射线的整个长度的成纤维细胞。我们的实验可视化和量化纳入附属Blastema的掺入蜂窝群的后代贡献,通常具有替补限制。

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