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背唇闭合的数学模型。

A mathematical model for dorsal closure.

机构信息

Laboratoire J.A. Dieudonné, Université de Nice, UMR 6621 CNRS, Parc Valrose, F-06108 NICE Cédex 02, France.

出版信息

J Theor Biol. 2011 Jan 7;268(1):105-19. doi: 10.1016/j.jtbi.2010.09.029. Epub 2010 Sep 24.

Abstract

During embryogenesis, drosophila embryos undergo epithelial folding and unfolding, which leads to a hole in the dorsal epidermis, transiently covered by an extraembryonic tissue called the amnioserosa. Dorsal closure (DC) consists of the migration of lateral epidermis towards the midline, covering the amnioserosa. It has been extensively studied since numerous physical mechanisms and signaling pathways present in DC are conserved in other morphogenetic events and wound healing in many other species (including vertebrates). We present here a simple mathematical model for DC that involves a reduced number of parameters directly linked to the intensity of the forces in the presence and which is applicable to a wide range of geometries of the leading edge (LE). This model is a natural generalization of the very interesting model proposed in Hutson et al. (2003). Being based on an ordinary differential equation (ODE) approach, the previous model had the advantage of being even simpler, but this restricted significantly the variety of geometries that could be considered and thus the number of modified dorsal closures that could be studied. A partial differential equation (PDE) approach, as the one developed here, allows considering much more general situations that show up in genetically or physically perturbed embryos and whose study will be essential for a proper understanding of the different components of the DC process. Even for native embryos, our model has the advantage of being applicable since an early stages of DC when there is no antero-posterior symmetry (approximately verified only in the late phases of DC). We validate our model in a native setting and also test it further in embryos where the zipping force is perturbed through the expression of spastin (a microtubule severing protein). We obtain variations of the force coefficients that are consistent with what was previously described for this setting.

摘要

在胚胎发生过程中,果蝇胚胎经历上皮折叠和展开,导致背表皮出现一个孔,暂时被称为羊膜浆的胚胎外组织覆盖。背侧闭合(DC)包括侧表皮向中线迁移,覆盖羊膜浆。由于 DC 中存在的许多物理机制和信号通路在其他形态发生事件和许多其他物种(包括脊椎动物)的伤口愈合中得到保守,因此它已经被广泛研究。我们在这里提出了一个简单的 DC 数学模型,该模型涉及数量较少的参数,这些参数直接与存在的力的强度相关,并且适用于前缘(LE)的广泛几何形状。该模型是 Hutson 等人提出的非常有趣的模型的自然推广。基于常微分方程(ODE)方法,先前的模型具有更简单的优势,但这极大地限制了可以考虑的几何形状的多样性,从而限制了可以研究的修改后的背侧闭合的数量。如这里所开发的偏微分方程(PDE)方法允许考虑在遗传或物理扰动胚胎中出现的更一般的情况,对这些情况的研究对于正确理解 DC 过程的不同组成部分至关重要。即使对于原生胚胎,我们的模型也具有优势,因为它适用于 DC 的早期阶段,此时没有前后对称性(仅在 DC 的后期阶段大致验证)。我们在原生环境中验证了我们的模型,并且还通过表达 spastin(一种微管切割蛋白)进一步测试了它在 zipping 力受到扰动的胚胎中。我们获得了力系数的变化,这些变化与先前针对该环境描述的变化一致。

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