Keller Ray, Shook David
Department of Biology, University of Virginia, Charlottesville, VA 22904, USA.
Philos Trans R Soc Lond B Biol Sci. 2008 Apr 12;363(1495):1317-32. doi: 10.1098/rstb.2007.2250.
We review the dynamic patterns of cell behaviours in the marginal zone of amphibians with a focus on how the progressive nature and the geometry of these behaviours drive blastopore closure. Mediolateral cell intercalation behaviour and epithelial-mesenchymal transition are used in different combinations in several species of amphibian to generate a conserved pattern of circumblastoporal hoop stresses. Although these cell behaviours are quite different and involve different germ layers and tissue organization, they are expressed in similar patterns. They are expressed progressively along presumptive lateral-medial and anterior-posterior axes of the body plan in highly ordered geometries of functional significance in the context of the biomechanics of blastopore closure, thereby accounting for the production of similar patterns of circumblastoporal forces. It is not the nature of the cell behaviour alone, but the context, the biomechanical connectivity and spatial and temporal pattern of its expression that determine specificity of morphogenic output during gastrulation and blastopore closure. Understanding the patterning of these dynamic features of cell behaviour is important and will require analysis of signalling at much greater spatial and temporal resolution than that has been typical in the analysis of patterning tissue differentiation.
我们回顾了两栖动物边缘区细胞行为的动态模式,重点关注这些行为的渐进性和几何形状如何驱动胚孔闭合。在几种两栖动物中,左右细胞插入行为和上皮-间充质转化以不同组合被用于产生围绕胚孔的环形应力的保守模式。尽管这些细胞行为差异很大且涉及不同的胚层和组织组织,但它们以相似的模式表达。在胚孔闭合生物力学的背景下,它们沿着身体蓝图的假定左右轴和前后轴以具有功能意义的高度有序几何形状逐渐表达,从而解释了围绕胚孔的力的相似模式的产生。决定原肠胚形成和胚孔闭合期间形态发生输出特异性的并非仅仅是细胞行为的性质,而是其背景、生物力学连接以及表达的时空模式。理解这些细胞行为动态特征的模式很重要,这将需要以比典型的组织分化模式分析更高的时空分辨率来分析信号传导。