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龟甲周期性图案的起源和丧失。

The origin and loss of periodic patterning in the turtle shell.

机构信息

Developmental Biology Program, Institute of Biotechnology, University of Helsinki, P.O. Box 56, Helsinki FIN-00014, Finland

Developmental Biology Program, Institute of Biotechnology, University of Helsinki, P.O. Box 56, Helsinki FIN-00014, Finland.

出版信息

Development. 2014 Aug;141(15):3033-9. doi: 10.1242/dev.109041.

Abstract

The origin of the turtle shell over 200 million years ago greatly modified the amniote body plan, and the morphological plasticity of the shell has promoted the adaptive radiation of turtles. The shell, comprising a dorsal carapace and a ventral plastron, is a layered structure formed by basal endochondral axial skeletal elements (ribs, vertebrae) and plates of bone, which are overlain by keratinous ectodermal scutes. Studies of turtle development have mostly focused on the bones of the shell; however, the genetic regulation of the epidermal scutes has not been investigated. Here, we show that scutes develop from an array of patterned placodes and that these placodes are absent from a soft-shelled turtle in which scutes were lost secondarily. Experimentally inhibiting Shh, Bmp or Fgf signaling results in the disruption of the placodal pattern. Finally, a computational model is used to show how two coupled reaction-diffusion systems reproduce both natural and abnormal variation in turtle scutes. Taken together, these placodal signaling centers are likely to represent developmental modules that are responsible for the evolution of scutes in turtles, and the regulation of these centers has allowed for the diversification of the turtle shell.

摘要

两亿多年前龟鳖类的起源极大地改变了羊膜动物的身体结构,而壳的形态可塑性促进了龟鳖类的适应性辐射。龟鳖类的壳由背甲和腹甲组成,是由基干软骨内轴骨骼元素(肋骨、脊椎骨)和骨板组成的层状结构,上面覆盖着角质的外胚层鳞片。对龟鳖类发育的研究大多集中在壳的骨骼上,而表皮鳞片的遗传调控尚未得到研究。在这里,我们发现鳞片是从一系列有图案的基板发育而来的,而在一种壳已退化的软壳龟中,这些基板缺失了。实验抑制 Shh、Bmp 或 Fgf 信号会导致基板模式中断。最后,一个计算模型用于展示两个耦合的反应扩散系统如何重现龟鳖类鳞片的自然和异常变异。综上所述,这些基板信号中心可能代表了负责龟鳖类鳞片进化的发育模块,而这些中心的调控允许了龟鳖类壳的多样化。

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