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一路追溯到图灵的海龟:外胚层发育不良受体(EDAR)在头甲嵴中的保守作用表明跨外胚层附属器的前模式具有深远的同源性。

Turing's turtles all the way down: A conserved role of EDAR in the carapacial ridge suggests a deep homology of prepatterns across ectodermal appendages.

作者信息

Zimm Roland, Oberdick Danielle, Gnetneva Anna, Schneider Pascal, Cebra-Thomas Judith, Moustakas-Verho Jacqueline E

机构信息

Institute of Functional Genomics, Ecole Normale Supérieure de Lyon, Lyon, France.

Department of Biology, Millersville University, Millersville, Pennsylvania, USA.

出版信息

Anat Rec (Hoboken). 2023 Jun;306(6):1201-1213. doi: 10.1002/ar.25096. Epub 2022 Oct 14.

Abstract

The scutes of the turtle shell are epidermal shields that begin their formation during the early stages of shell development. Like other skin appendages, turtle scutes are hypothesized to be patterned by reaction-diffusion systems. We have previously established ex vivo and in silico systems to study these mechanisms experimentally and have further shown that mathematical models can explain the dynamics of the induction of turtle scute primordia and the generation of final scute architecture. Using these foundations, we expand our current knowledge and test the roles of ectodysplasin and activin signaling in the development of turtle scutes. We find that these molecules play important roles in the prepatterning of scute primordia along the carapacial ridge and show that blocking Edar signaling may lead to a complete loss of marginal scute primordia. We show that it is possible to reproduce these observations using simple mathematical modeling, thereby suggesting a stabilizing role for ectodysplasin within the reaction-diffusion mechanisms. Finally, we argue that our findings further entrench turtle scutes within a class of developmental systems composed of hierarchically nested reaction-diffusion mechanisms, which is conserved across ectodermal organs.

摘要

龟壳的盾片是表皮盾,在龟壳发育的早期阶段开始形成。与其他皮肤附属器一样,龟盾片被认为是由反应扩散系统形成图案的。我们之前已经建立了体外和计算机模拟系统来通过实验研究这些机制,并且进一步表明数学模型可以解释龟盾片原基诱导的动力学以及最终盾片结构的生成。基于这些基础,我们扩展了当前的知识,并测试了外胚层发育不良蛋白和激活素信号在龟盾片发育中的作用。我们发现这些分子在沿着背甲嵴的盾片原基预模式形成中起重要作用,并表明阻断Edar信号可能导致边缘盾片原基完全缺失。我们表明使用简单的数学建模可以重现这些观察结果,从而表明外胚层发育不良蛋白在反应扩散机制中具有稳定作用。最后,我们认为我们的发现进一步将龟盾片纳入一类由分层嵌套的反应扩散机制组成的发育系统中,这种机制在外胚层器官中是保守的。

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