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首页> 外文期刊>Development Growth and Differentiation >Robust and local positional information within a fin ray directs fin length during zebrafish regeneration
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Robust and local positional information within a fin ray directs fin length during zebrafish regeneration

机译:Fin Ray内的稳健和局部位置信息将翅片长度引导斑马鱼再生期间

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It has been proposed that cells are regulated to form specific morphologies and sizes according to positional information. However, the entity and nature of positional information have not been fully understood yet. The zebrafish caudal fin has a characteristic V‐shape; dorsal and ventral fin rays are longer than the central ones. This fin shape regenerates irrespective of the sites or shape of fin amputation. It is thought that reformation of tissue occurs according to positional information. In this study, we developed a novel transplantation procedure for grafting a whole fin ray to an ectopic position and examined whether the information that specifies fin length exists within each fin ray. Intriguingly, when long and short fin rays were swapped, they regenerated to form longer or shorter fin rays than the adjacent host fin rays, respectively. Further, the abnormal fin ray lengths were maintained for a long time, more than 5?months, and after further re‐amputation. In contrast to intra‐fin grafting, when fin ray grafting was performed between fish, cells in the grafts disappeared due to immune rejection, and the grafted fin rays adapted to the host position to form a normal fin. Together, our data suggest that the information that directs fin length does exist in cells within a single fin ray and that it has a robust property—it is stable for a long time and is hard to rewrite. Our study highlighted a novel positional information mechanism for directing regenerating fin length.
机译:已经提出,细胞被调节以根据位置信息形成特异性形态和尺寸。然而,尚未完全理解位置信息的实体和性质。斑马鱼尾鳍具有特征性V形;背部和腹侧射线射线比中心射线长。这种翅片形状无论鳍片截肢的部位或形状如何再生。据认为,组织的改革会根据位置信息发生。在这项研究中,我们开发了一种新的移植程序,用于将整个鳍射线嫁接到异位位置,并检查每个鳍射线内是否存在指定鳍长度的信息。喜致地,当换流长而短的鳍射线时,它们分别再生以形成比相邻主鳍射线更长或更短的鳍片光线。此外,将异常的鳍射线长度保持长时间,超过5?个月,并在进一步重新截肢后。与翅片内接枝形成对比,当在鱼之间进行翅片射线嫁接时,移植物中的细胞由于免疫排斥而消失,并且接枝的鳍片射线适合于主体位置形成正常鳍片。我们的数据表明,指示FIN长度的信息在单个FIN射线内的单元格中存在,并且它具有强大的属性 - 它很长一段时间稳定,很难重写。我们的研究强调了一种用于指导再生翅片长度的新型位置信息机制。

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