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Updated: Jun 16, 2026

Generation of Chimeric Axolotls with Mutant Haploid Limbs Through Embryonic Grafting
Published on: January 29, 2020
Posterior shift of Shh-Fgf signaling in axolotl limb regeneration drives sequential digit formation
Saya Furukawa1, Sakiya Yamamoto1, Haruki Nakayama1
1Graduate School of Environmental, Life, Natural Science and Technology, Okayama University, Okayama, Okayama Prefecture, Japan.
Abstract:
Do conserved morphogen modules generate a given form only via a single spatiotemporal deployment, or can alternative deployments yield the same morphology? Axolotl limb regeneration provides a tractable test bed. SHH and FGF8, universally used in limb formation across vertebrates, also operate in axolotl, although the spatial domain of Fgf8 differs markedly from that in amniotes. A mutual Shh/Fgf feedback loop is likewise conserved. Here, we show that, in axolotl, the active domain of this loop shifts progressively posterior as digit formation proceeds. In step with this anterior-to-posterior displacement, digit-forming regions are sequentially induced posteriorly, explaining the axolotl's reversed order relative to the amniote posterior-to-anterior sequence. These findings indicate that conserved molecular toolkits can overcome differences in spatial deployment to produce equivalent final limb architectures, demonstrating that there is not a single route to a target morphology.
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