Rohr Stefan, Otten Cécile, Abdelilah-Seyfried Salim
Max Delbrück Center for Molecular Medicine, University of Freiburg, Germany.
Circ Res. 2008 Feb 1;102(2):e12-9. doi: 10.1161/CIRCRESAHA.107.165241. Epub 2008 Jan 17.
Many vertebrate organs are derived from monolayered epithelia that undergo morphogenesis to acquire their shape. Whereas asymmetric left/right gene expression within the zebrafish heart field has been well documented, little is known about the tissue movements and cellular changes underlying early cardiac morphogenesis. Here, we demonstrate that asymmetric involution of the myocardium of the right-posterior heart field generates the ventral floor, whereas the noninvoluting left heart field gives rise to the dorsal roof of the primary heart tube. During heart tube formation, asymmetric left/right gene expression within the myocardium correlates with asymmetric tissue morphogenesis. Disruption of left/right gene expression causes randomized myocardial tissue involution. Time-lapse analysis combined with genetic analyses reveals that motility of the myocardial epithelium is a tissue migration process. Our results demonstrate that asymmetric morphogenetic movements of the 2 bilateral myocardial cell populations generate different dorsoventral regions of the zebrafish heart tube. Failure to generate a heart tube does not affect the acquisition of atrial versus ventricular cardiac cell shapes. Therefore, establishment of basic cardiac cell shapes precedes cardiac function. Together, these results provide the framework for the integration of single cell behaviors during the formation of the vertebrate primary heart tube.
许多脊椎动物器官源自单层上皮细胞,这些上皮细胞通过形态发生来获得其形状。尽管斑马鱼心脏区域内不对称的左右基因表达已有充分记录,但对于早期心脏形态发生背后的组织运动和细胞变化却知之甚少。在这里,我们证明右后心脏区域心肌的不对称内卷产生了腹侧底部,而不内卷的左心脏区域则形成了原始心管的背侧顶部。在心管形成过程中,心肌内不对称的左右基因表达与不对称的组织形态发生相关。左右基因表达的破坏会导致心肌组织内卷随机化。延时分析与遗传分析相结合表明,心肌上皮细胞的运动是一个组织迁移过程。我们的结果表明,两个双侧心肌细胞群体的不对称形态发生运动产生了斑马鱼心管不同的背腹区域。未能形成心管并不影响心房与心室心肌细胞形状的获得。因此,基本心肌细胞形状的建立先于心脏功能。总之,这些结果为脊椎动物原始心管形成过程中单个细胞行为的整合提供了框架。