Webb Alexis B, Soroldoni Daniele, Oswald Annelie, Schindelin Johannes, Oates Andrew C
Max Planck Institute of Molecular Cell Biology and Genetics;
Max Planck Institute of Molecular Cell Biology and Genetics.
J Vis Exp. 2014 Jul 24(89):50307. doi: 10.3791/50307.
Segmentation is a periodic and sequential morphogenetic process in vertebrates. This rhythmic formation of blocks of tissue called somites along the body axis is evidence of a genetic oscillator patterning the developing embryo. In zebrafish, the intracellular clock driving segmentation is comprised of members of the Her/Hes transcription factor family organized into negative feedback loops. We have recently generated transgenic fluorescent reporter lines for the cyclic gene her1 that recapitulate the spatio-temporal pattern of oscillations in the presomitic mesoderm (PSM). Using these lines, we developed an in vitro culture system that allows real-time analysis of segmentation clock oscillations within single, isolated PSM cells. By removing PSM tissue from transgenic embryos and then dispersing cells from oscillating regions onto glass-bottom dishes, we generated cultures suitable for time-lapse imaging of fluorescence signal from individual clock cells. This approach provides an experimental and conceptual framework for direct manipulation of the segmentation clock with unprecedented single-cell resolution, allowing its cell-autonomous and tissue-level properties to be distinguished and dissected.
体节形成是脊椎动物中一种周期性且连续的形态发生过程。沿着身体轴线有节奏地形成称为体节的组织块,这证明了一种遗传振荡器在为发育中的胚胎构建模式。在斑马鱼中,驱动体节形成的细胞内时钟由组织成负反馈环的Her/Hes转录因子家族成员组成。我们最近为循环基因her1生成了转基因荧光报告系,该报告系概括了前体节中胚层(PSM)振荡的时空模式。利用这些系,我们开发了一种体外培养系统,该系统允许对单个分离的PSM细胞内的体节时钟振荡进行实时分析。通过从转基因胚胎中取出PSM组织,然后将来自振荡区域的细胞分散到玻璃底培养皿上,我们生成了适合对单个时钟细胞的荧光信号进行延时成像的培养物。这种方法为以前所未有的单细胞分辨率直接操纵体节时钟提供了一个实验和概念框架,从而能够区分和剖析其细胞自主性和组织水平特性。