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Generating, growing and transforming skeletal shape: insights from amphibian pharyngeal arch cartilages

机译:生成,生长和转化骨骼形状:两栖咽咽弓软骨的见解

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摘要

Amphibians that undergo a metamorphosis provide an unparalleled opportunity to investigate how skeletal shape is generated, preserved, and transformed in development. Their pharyngeal arch (PA) cartilages, which support breathing and feeding behaviors, form embryonically from cranial neural crest cells, grow isometrically at larval stages, and abruptly change shape during metamorphosis. Further, the shape changes occur in three different ways: some adult cartilages form de novo, others emerge from within resorbing larval cartilages and some larval cartilages reshape themselves at the cellular level. Isometric growth followed by abrupt shape change is unique to amphibian PA cartilages, which suggests that the origin and evolution of amphibian metamorphosis has been influenced by the tissue properties of cartilage. This essay reviews the functional role of the PA skeleton in frogs and salamanders and presents a mechanistic framework for understanding how its shape is generated, preserved, and transformed at the levels of cell behavior and specification mechanisms.
机译:经历了变态的两栖动物提供了无与伦比的机会来研究骨骼形状如何在发育中产生,保存和转化。它们的咽弓(PA)软骨支持呼吸和进食行为,从颅神经rest细胞以胚胎形式形成,在幼虫阶段等长生长,并在变态过程中突然改变形状。此外,形状变化以三种不同的方式发生:一些成年的软骨从头形成,另一些从吸收性幼体软骨中出现,而某些幼体软骨则在细胞水平上自我重塑。两栖动物PA软骨特有的等距生长和突然的形状变化,这表明两栖动物变态的起源和进化受到软骨组织特性的影响。本文回顾了PA骨架在青蛙和sal中的功能作用,并提出了一个机制框架,以了解其形状是如何在细胞行为和规范机制水平上产生,保存和转化的。

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