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Retinoic acid coordinates somitogenesis and left-right patterning in vertebrate embryos

机译:维甲酸协调脊椎动物胚胎中的体发生和左右模式

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摘要

A striking feature of the body plan of a majority of animals is bilateral symmetry. Almost nothing is known about the mechanisms controlling the symmetrical arrangement of the left and right body sides during development. Here we report that blocking the production of retinoic acid ( RA) in chicken embryos leads to a desynchronization of somite formation between the two embryonic sides, demonstrated by a shortened left segmented region. This defect is linked to a loss of coordination of the segmentation clock oscillations(1). The lateralization of this defect led us to investigate the relation between somitogenesis and the left - right asymmetry machinery(2,3) in RA-deficient embryos. Reversal of the situs in chick(4,5) or mouse(6) embryos lacking RA results in a reversal of the somitogenesis laterality defect. Our data indicate that RA is important in buffering the lateralizing influence of the left - right machinery, thus permitting synchronization of the development of the two embryonic sides.
机译:大多数动物的身体计划的显着特征是双侧对称。关于控制显影过程中左右身体两侧对称排列的机制几乎一无所知。在这里,我们报道了阻止鸡胚中维甲酸(RA)的产生会导致两个胚侧之间的somite形成失步,这是由缩短的左侧分割区域所证实的。这种缺陷与分段时钟振荡的协调性丧失有关(1)。该缺陷的偏侧化使我们研究了RA缺陷型胚胎中的体细胞发生与左右不对称机制之间的关系(2,3)。缺乏RA的小鸡(4,5)或小鼠(6)胚胎中的位置发生逆转导致了体细胞发生侧向缺陷的逆转。我们的数据表明RA在缓冲左右机械的横向影响方面很重要,因此可以使两个胚侧的发育同步。

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