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Retinoic acid signalling links left-right asymmetric patterning and bilaterally symmetric somitogenesis in the zebrafish embryo

机译:维甲酸信号连接斑马鱼胚胎中的左右不对称模式和双边对称的体发生

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摘要

During embryogenesis, cells are spatially patterned as a result of highly coordinated and stereotyped morphogenetic events. In the vertebrate embryo, information on laterality is conveyed to the node, and subsequently to the lateral plate mesoderm, by a complex cascade of epigenetic and genetic events, eventually leading to a left - right asymmetric body plan. At the same time, the paraxial mesoderm is patterned along the anterior - posterior axis in metameric units, or somites, in a bilaterally symmetric fashion. Here we characterize a cascade of laterality information in the zebrafish embryo and show that blocking the early steps of this cascade ( before it reaches the lateral plate mesoderm) results in random left - right asymmetric somitogenesis. We also uncover a mechanism mediated by retinoic acid signalling that is crucial in buffering the influence of the flow of laterality information on the left - right progression of somite formation, and thus in ensuring bilaterally symmetric somitogenesis.
机译:在胚胎发生过程中,由于高度协调和定型的形态发生事件,细胞在空间上被图案化。在脊椎动物的胚胎中,通过表观遗传和遗传事件的复杂级联,将有关横向性的信息传递到结节,然后传递到外侧板中胚层,最终导致左右对称的身体计划。同时,近轴中胚层以双侧对称方式沿前-后轴以同分异构单位或体节构图。在这里,我们表征了斑马鱼胚胎中的横向信息的级联,并显示出阻止这种级联的早期步骤(在到达侧板中胚层之前)会导致随机的左右对称性发生。我们还发现了视黄酸信号介导的机制,该机制对于缓冲侧向信息流对somite形成过程的左右进展的影响至关重要,因此在确保双边对称的体发生中也至关重要。

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