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Saltatory control of isometric growth in the zebrafish caudal fin is disrupted in long fin and rapunzel mutants.

机译:在长鳍和长发公主突变体中,斑马鱼尾鳍等距生长的盐碱控制被破坏。

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摘要

Zebrafish fins grow by sequentially adding new segments of bone to the distal end of each fin ray. In wild type zebrafish, segment addition is regulated such that an isometric relationship is maintained between fin length and body length over the lifespan of the growing fish. Using a novel, surrogate marker for fin growth in conjunction with cell proliferation assays, we demonstrate here that segment addition is not continuous, but rather proceeds by saltation. Saltation is a fundamental growth mechanism shared by disparate vertebrates, including humans. We further demonstrate that segment addition proceeds in conjunction with cyclic bursts of cell proliferation in the distal fin ray mesenchyme. In contrast, cells in the distal fin epidermis proliferate at a constant rate throughout the fin ray growth cycle. Finally, we show that two separate fin overgrowth mutants, long fin and rapunzel, bypass the stasis phase of the fin ray growth cycle to develop asymmetrical and symmetrical fin overgrowth, respectively.
机译:斑马鱼鳍通过向每个鳍射线的远端顺序添加新的骨骼段来生长。在野生型斑马鱼中,节段的添加受到调节,以使在成鱼的寿命中鳍长与体长之间保持等距关系。使用新的,代名词的鳍生长的代名词,结合细胞增殖试验,我们在这里证明了区段的添加不是连续的,而是通过盐化进行的。盐分是包括人类在内的不同脊椎动物共有的基本生长机制。我们进一步证明,段添加与远端鳍间充质细胞中细胞增殖的周期性爆发一起进行。相反,在整个鳍片生长周期中,远端鳍表皮中的细胞以恒定速率增殖。最后,我们显示了两个单独的鳍过度生长突变体,长鳍和长发公主,绕过鳍射线生长周期的停滞期,分别发展出不对称和对称鳍过度生长。

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