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Unique and non-redundant function of csf1r paralogues in regulation and evolution of post-embryonic development of the zebrafish

机译:CSF1R旁边度术中Zebrafish后胚胎发育的调节和演变中的独特和非冗余功能

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摘要

Evolution is replete with reuse of genes in different contexts, leading to multifunctional roles of signaling factors during development. Here, we explore osteoclast regulation during skeletal development through analysis of colony-stimulating factor 1 receptor (csf1r) function in the zebrafish. A primary role of Csf1r signaling is to regulate the proliferation, differentiation and function of myelomonocytic cells, including osteoclasts. We demonstrate the retention of two functional paralogues of csf1r in zebrafish. Mutant analysis indicates that the paralogues have shared, non-redundant roles in regulating osteoclast activity during the formation of the adult skeleton. csf1ra, however, has adopted unique roles in pigment cell patterning not seen in the second paralogue. We identify a unique noncoding element within csflra of fishes that is sufficient for controlling gene expression in pigment cells during development. As a role for Csf1r signaling in pigmentation is not observed in mammals or birds, it is likely that the overlapping roles of the two paralogues released functional constraints on csf1ra, allowing the signaling capacity of Csf1r to serve a novel function in the evolution of pigment pattern in fishes.
机译:Evolution是在不同背景下重新利用基因的重用,导致发射信号传导因子的多功能角色。在这里,我们通过分析斑马鱼中的菌落刺激因子1受体(CSF1R)功能来探讨骨骼发育过程中的骨壳调节。 CSF1R信号传导的主要作用是调节骨髓细胞细胞的增殖,分化和功能,包括疏口细胞。我们证明了斑马鱼中的CSF1R的两个功能副潜剂。突变分析表明,寄生术在形成成人骨架期间调节骨蛋白活性的非冗余作用。然而,CSF1RA在第二个蛋白尿中未见的颜料细胞图案中采用了独特的作用。我们鉴定了在发育过程中足以控制颜料细胞中基因表达的CSFLRA内的独特非编码元素。作为在哺乳动物或鸟类中未观察到色素沉着中的CSF1R信号传导的作用,两种寄生术的重叠角色可能在CSF1RA上发布了功能约束,允许CSF1R的信号能力在颜料模式的演变中提供新功能在鱼类。

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