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The heart tube forms and elongates through dynamic cell rearrangement coordinated with foregut extension

机译:通过与前ut延伸的动态电池重新排列的心脏管形式和细长

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In the initiation of cardiogenesis, the heart primordia transform from bilateral flat sheets of mesoderm into an elongated midline tube. Here, we discover that this rapid architectural change is driven by actomyosin-based oriented cell rearrangement and resulting dynamic tissue reshaping (convergent extension, CE). By labeling clusters of cells spanning the entire heart primordia, we show that the heart primordia converge toward the midline to form a narrow tube, while extending perpendicularly to rapidly lengthen it. Our data for the first time visualize the process of early heart tube formation from both the medial (second) and lateral (first) heart fields, revealing that both fields form the early heart tube by essentially the same mechanism. Additionally, the adjacent endoderm coordinately forms the foregut through previously unrecognized movements that parallel those of the heart mesoderm and elongates by CE. In conclusion, our data illustrate how initially two-dimensional flat primordia rapidly change their shapes and construct the three-dimensional morphology of emerging organs in coordination with neighboring morphogenesis.
机译:在开始心肌发生中,心脏原序从中胚层的双侧平板转化成细长的中线管。在这里,我们发现这种快速的架构变化由基于肌动素的取向细胞重新排列和产生动态组织重塑(收敛延伸,CE)驱动。通过标记跨越整个心脏原始的细胞簇,我们表明心脏原始朝向中线收敛以形成窄管,同时垂直延伸以快速延长它。我们的数据第一次可视化内侧(第二)和横向(第一)心脏领域的早期心脏管形成过程,揭示了两个场通过基本相同的机制形成早期心脏管。另外,相邻的内胚层通过先前未被识别的运动和通过Ce平行的细胞胚层和伸长细长来形成前述内容。总之,我们的数据说明了最初二维平底基金会如何快速改变它们的形状,并在与相邻的形态发生的协调中构建新兴器官的三维形态。

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