Institute of Theoretical Physics and Mark Kac Center for Complex Systems Research, Jagiellonian University, Łojasiewicza 11, 30-348 Kraków, Poland.
Phys Rev Lett. 2023 Mar 3;130(9):098402. doi: 10.1103/PhysRevLett.130.098402.
We explain the principles of gene expression pattern stabilization in systems of interacting, diffusible morphogens, with dynamically established source regions. Using a reaction-diffusion model with a step-function production term, we identify the phase transition between low-precision indeterminate patterning and the phase in which a traveling, well-defined contact zone between two domains is formed. Our model analytically explains single- and two-gene domain dynamics and provides pattern stability conditions for all possible two-gene regulatory network motifs.
我们解释了在具有动态建立的源区域的相互作用、可扩散形态发生因子系统中基因表达模式稳定的原理。使用具有阶跃函数产生项的反应-扩散模型,我们确定了低精度不确定模式形成与两个区域之间形成移动的、明确的接触区的相位之间的相变。我们的模型分析解释了单基因和双基因域动力学,并为所有可能的双基因调控网络基序提供了模式稳定性条件。