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首页> 外文期刊>Development >Commissure formation in the embryonic CNS of Drosophila.
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Commissure formation in the embryonic CNS of Drosophila.

机译:果蝇的胚胎中枢神经系统中的连合形成。

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Most of the neurons of the ventral nerve cord send out long projecting axons which cross the midline. In the Drosophila central nervous system (CNS) cells of the midline give rise to neuronal and glial lineages with different functions during the establishment of the commissural pattern. Here we present evidence that beside the previously known NETRIN/FRAZZLED (DCC) signalling system an additional attractive system(s) is operating in the developing embryonic nervous system of Drosophila. Attractive cues appear to be provided by the midline neurons. We show that the glial cells present repulsive signals to the previously described ROUNDABOUT receptor in addition to a permissive contact-dependent signal helping commissural growth cones across the midline. A novel repulsive component is encoded by the karussell gene. Furthermore the midline glial cells separate anterior and posterior commissures. By genetic criteria we demonstrate that some of the genes we have identified are acting in the midline glia whereas other genes are required in the midline neurons. The results lead to a detailed model relating different cellular functions to axonal patterning at the midline.
机译:腹神经索的大多数神经元发出穿过中线的长突突轴突。果蝇中枢神经系统(CNS)中的细胞在连合模式的建立过程中产生具有不同功能的神经元和神经胶质谱系。在这里,我们提供的证据表明,除先前已知的NETRIN / FRAZZLED(DCC)信号系统外,果蝇的发育中的胚胎神经系统还运行着其他吸引人的系统。中线神经元似乎提供了有吸引力的线索。我们显示,神经胶质细胞除了允许接触依赖的信号以外,还可以向先前描述的ROUNDABOUT受体提供排斥信号,从而有助于跨中线的连合生长锥。 karussell基因编码一种新的排斥成分。此外,中线神经胶质细胞将前后连合分开。通过遗传标准,我们证明我们已经鉴定出的某些基因在中线胶质细胞中起作用,而其他基因在中线神经元中是必需的。结果导致了一个详细的模型,该模型将不同的细胞功能与中线的轴突模式联系起来。

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