Department of Physics, University of California, Santa Barbara, CA 93106.
Kavli Institute for Theoretical Physics, University of California, Santa Barbara, CA 93106.
Proc Natl Acad Sci U S A. 2023 Mar 28;120(13):e2220167120. doi: 10.1073/pnas.2220167120. Epub 2023 Mar 22.
Orientational order, encoded in anisotropic fields, plays an important role during the development of an organism. A striking example of this is the freshwater polyp , where topological defects in the muscle fiber orientation have been shown to localize to key features of the body plan. This body plan is organized by morphogen concentration gradients, raising the question how muscle fiber orientation, morphogen gradients and body shape interact. Here, we introduce a minimal model that couples nematic orientational order to the gradient of a morphogen field. We show that on a planar surface, alignment to a radial concentration gradient can induce unbinding of topological defects, as observed during budding and tentacle formation in , and stabilize aster/vortex-like defects, as observed at a 's mouth. On curved surfaces mimicking the morphologies of in various stages of development-from spheroid to adult-our model reproduces the experimentally observed reorganization of orientational order. Our results suggest how gradient alignment and curvature effects may work together to control orientational order during development and lay the foundations for future modeling efforts that will include the tissue mechanics that drive shape deformations.
各向异性场中的取向序在生物发育过程中起着重要作用。一个显著的例子是淡水水螅,其中已经表明肌肉纤维取向的拓扑缺陷定位于身体形态的关键特征。这个身体形态是由形态发生素浓度梯度组织的,这就提出了一个问题,即肌肉纤维取向、形态发生素梯度和身体形状如何相互作用。在这里,我们引入了一个将向列取向有序耦合到形态发生场梯度的最小模型。我们表明,在平面上,与径向浓度梯度的对齐可以诱导拓扑缺陷的解缚,这在 的出芽和触手形成过程中观察到,并且可以稳定星状/旋涡状缺陷,如在 的“口”处观察到的。在模仿 在发育的各个阶段的形态的曲面上-从球体到成年-我们的模型再现了实验观察到的取向有序的重新组织。我们的结果表明,梯度对齐和曲率效应如何共同作用以控制发育过程中的取向有序,并为未来的建模工作奠定基础,这些工作将包括驱动形状变形的组织力学。