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蝾螈趾再生的特征:保守机制、不同模式以及刺猬信号通路的关键作用

A Characterization of Axolotl Digit Regeneration: Conserved Mechanisms, Divergent Patterning, and a Critical Role for Hedgehog Signaling.

作者信息

Griffiths Jackson R, Miller Melissa, Duerr Timothy J, Owen Ashlin E, Monaghan James R

机构信息

Northeastern University, Department of Biology, Boston, MA.

Northeastern University, Institute for Chemical Imaging of Living Systems, Boston, MA.

出版信息

bioRxiv. 2025 Jun 6:2025.06.03.657663. doi: 10.1101/2025.06.03.657663.

Abstract

Axolotl digits offer an experimentally versatile model for studying complex tissue regeneration. Here, we provide a comprehensive morphological and molecular characterization of digit regeneration, revealing both conserved features and notable divergences from classical limb regeneration. Digit blastemas progress through similar morphological stages, are nerve-dependent, contain key regenerative cell populations, and express many canonical morphogens and mitogens. However, they exhibit minimal expression of the A-P patterning genes and ; suggesting distal outgrowth and patterning occur independently of these signals. Joint regenerative fidelity varies significantly across digits and cannot be explained by differences in nerve supply, cell proliferation, or differential expression of any patterning genes assessed in this study. Furthermore, functional experiments reveal Hedgehog signaling is essential for interphalangeal joint regeneration, but activation alone is insufficient to improve fidelity in less robust digits. This system combines experimental accessibility with intrinsic variation in regenerative outcomes, making it an ideal platform to identify critical determinants of successful tissue regeneration and refine models of appendage patterning.

摘要

美西螈的指提供了一个用于研究复杂组织再生的实验性通用模型。在此,我们提供了指再生的全面形态学和分子特征,揭示了与经典肢体再生的保守特征和显著差异。指芽经历相似的形态学阶段,依赖神经,包含关键的再生细胞群体,并表达许多典型的形态发生素和有丝分裂原。然而,它们表现出A-P模式基因和的最小表达;这表明远端生长和模式形成独立于这些信号发生。关节再生保真度在不同指之间有显著差异,且不能用本研究中评估的神经供应、细胞增殖或任何模式基因的差异表达来解释。此外,功能实验表明刺猬信号通路对于指间关节再生至关重要,但仅激活不足以提高再生能力较弱的指的保真度。该系统将实验可及性与再生结果的内在变化相结合,使其成为识别成功组织再生的关键决定因素和完善附肢模式模型的理想平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4eb/12157609/94677bafbec7/nihpp-2025.06.03.657663v1-f0001.jpg

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