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Experimentally induced metamorphosis in axolotls reduces regenerative rate and fidelity

机译:实验诱导的a变形降低了再生率和保真度

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摘要

While most tetrapods are unable to regenerate severed body parts, amphibians display a remarkable ability to regenerate an array of structures. Frogs can regenerate appendages as larva, but they lose this ability around metamorphosis. In contrast, salamanders regenerate appendages as larva, juveniles, and adults. However, the extent to which fundamental traits (e.g., metamorphosis, body size, aging, etc.) restrict regenerative ability remains contentious. Here we utilize the ability of normally paedomorphic adult axolotls (Ambystoma mexicanum) to undergo induced metamorphosis by thyroxine exposure to test how metamorphosis and body size affects regeneration in age‐matched paedomorphic and metamorphic individuals. We show that body size does not affect regeneration in adult axolotls, but metamorphosis causes a twofold reduction in regeneration rate, and lead to carpal and digit malformations. Furthermore, we find evidence that metamorphic blastemal cells may take longer to traverse the cell cycle and display a lower proliferative rate. This study identifies the axolotl as a powerful system to study how metamorphosis restricts regeneration independently of developmental stage, body size, and age; and more broadly how metamorphosis affects tissue‐specific changes.
机译:尽管大多数四足动物无法再生受损的身体部位,但两栖动物显示出显着的再生一系列结构的能力。青蛙可以将附肢再生为幼虫,但是它们在变态周围失去了这种能力。相反,sal会重生幼虫,幼虫和成虫的附属物。但是,基本特征(例如,变态,体型,衰老等)限制再生能力的程度仍然是有争议的。在这里,我们利用正常人形的成年x(Ambystoma mexicanum)通过甲状腺素暴露引起的诱发变态的能力,来测试变态和体型如何影响与年龄相匹配的变态和变态个体的再生。我们表明,体型不影响成年a的再生,但变形会导致再生率降低两倍,并导致腕骨和趾骨畸形。此外,我们发现证据表明,变形胚细胞可能需要更长的时间才能遍历细胞周期并显示出较低的增殖率。这项研究确定了x是研究变态如何限制再生而不受发育阶段,体型和年龄影响的强大系统。更广泛地说,变形是如何影响组织特异性变化的。

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