Nagashima Hiroshi, Shibata Masahiro, Taniguchi Mari, Ueno Shintaro, Kamezaki Naoki, Sato Noboru
Division of Gross Anatomy and Morphogenesis, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan.
J Anat. 2014 Jul;225(1):60-70. doi: 10.1111/joa.12189. Epub 2014 Apr 23.
The turtle shell provides a fascinating model for the investigation of the evolutionary modifications of developmental mechanisms. Different conclusions have been put forth for its development, and it is suggested that one of the causes of the disagreement could be the differences in the species of the turtles used - the differences between hard-shelled turtles and soft-shelled turtles. To elucidate the cause of the difference, we compared the turtle shell development in the two groups of turtle. In the dorsal shell development, these two turtle groups shared the gene expression profile that is required for formation, and shared similar spatial organization of the anatomical elements during development. Thus, both turtles formed the dorsal shell through a folding of the lateral body wall, and the Wnt signaling pathway appears to have been involved in the development. The ventral portion of the shell, on the other hand, contains massive dermal bones. Although expression of HNK-1 epitope has suggested that the trunk neural crest contributed to the dermal bones in the hard-shelled turtles, it was not expressed in the initial anlage of the skeletons in either of the types of turtle. Hence, no evidence was found that would support a neural crest origin.
龟壳为研究发育机制的进化修饰提供了一个引人入胜的模型。关于其发育已经提出了不同的结论,并且有人认为分歧的原因之一可能是所用龟类物种的差异——硬壳龟和软壳龟之间的差异。为了阐明差异的原因,我们比较了两组龟的龟壳发育情况。在背甲发育方面,这两组龟共享形成所需的基因表达谱,并且在发育过程中解剖学元素具有相似的空间组织。因此,两种龟都是通过侧体壁的折叠形成背甲的,并且Wnt信号通路似乎参与了发育过程。另一方面,龟壳的腹侧部分包含大量真皮骨。尽管HNK-1表位的表达表明躯干神经嵴对硬壳龟的真皮骨有贡献,但在任何一种龟的骨骼初始原基中都未表达。因此,没有发现支持神经嵴起源的证据。