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Shared Developmental Mechanisms Pattern The Vertebrate Gill Arch And Paired Fin Skeletons

机译:共同的发育机制模式化了脊椎动物的ill弓和成对的鳍状骨

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摘要

Here, we describe the molecular patterning of chondrichthyan branchial rays (gill rays) and reveal profound developmental similarities between gill rays and vertebrate appendages. Sonic hedgehog (Shh) and fibroblast growth factor 8 (Fgf8) regulate the outgrowth and patterning of the chondrichthyan gill arch skeleton, in an interdependent manner similar to their roles in gnathostome paired appendages. Additionally, we demonstrate that paired appendages and branchial rays share other conserved developmental features, including Shh-mediated mirror-image duplications of the endoskeleton after exposure to retinoic acid, and Fgf8 expression by a pseudostratified distal epithelial ridge directing endoskeletal outgrowth. These data suggest that the skeletal patterning role of the retinoic acid/Shh/Fgf8 regulatory circuit has a deep evolutionary origin predating vertebrate paired appendages and may have functioned initially in patterning pharyngeal structures in a deuterostome ancestor of vertebrates.
机译:在这里,我们描述了软骨软骨分支射线(g射线)的分子模式,并揭示了rays射线与脊椎动物附肢之间的深刻发展相似性。声波刺猬(Shh)和成纤维细胞生长因子8(Fgf8)以相互依赖的方式调节软骨鱼类腮g弓骨架的生长和模式,类似于它们在gnathostome配对附件中的作用。此外,我们证明,成对的附肢和分支射线具有其他保守的发育特征,包括Shh介导的视黄酸暴露后的内骨骼镜面复制,以及由伪分层远侧上皮li引导内骨骼生长的Fgf8表达。这些数据表明,视黄酸/ Shh / Fgf8调节电路的骨架模式作用在脊椎动物配对的附件之前具有很深的进化起源,并且可能最初在脊椎动物的氘吻祖先的咽部结构模式中起作用。

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