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Bilaterally Symmetric Populations of Chicken dI1 (Commissural) Axons Cross the Floor Plate Independently of Each Other

机译:鸡dI1(市售)轴突的双向对称种群彼此独立越过底板

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摘要

Axons use temporal and directional guidance cues at intermediate targets to set the rate and direction of growth towards their synaptic targets. Our recent studies have shown that disrupting the temporal guidance process, by unilaterally accelerating the rate at which spinal dI1 (commissural) axons grow, resulted in turning errors both in the ventral spinal cord and after crossing the floor plate. Here we investigate a mechanistic explanation for these defects: the accelerated dI1 axons arrive in the ventral spinal cord before necessary fasciculation cues from incoming dI1 axons from the opposite side of the spinal cord. The identification of such an interaction would support a model of selective fasciculation whereby the pioneering dI1 axons serve as guides for the processes of the bilaterally symmetrical population of dI1 neurons. To test this model, we first developed the ability to “double” in ovo electroporate the embryonic chicken spinal cord to independently manipulate the rate of growth of the two bilateral populations of dI1 axons. Second, we examined the requirement for a putative bilateral interaction by unilaterally ablating the dI1 population in cultured explants of chicken embryonic spinal cord. Surprisingly, we find no evidence for a bilateral dI1 axon interaction, rather dI1 axons appear to project independently of each other.
机译:轴突在中间目标处使用时间和方向指导线索来设定朝向其突触目标的生长速度和方向。我们最近的研究表明,通过单方面加快脊柱dI1(连合)轴突的生长速度来破坏时间引导过程,会导致腹侧脊髓和穿过底板后出现转弯错误。在这里,我们调查这些缺陷的机械解释:加速的dI1轴突到达脊髓前,然后从来自脊髓另一侧的dI1轴突传入所需的束缚提示。这种相互作用的识别将支持选择性束缚的模型,由此先驱性的dI1轴突可作为dI1神经元的两侧对称种群过程的指南。为了测试该模型,我们首先开发了卵内电穿孔胚胎鸡脊髓的“双倍”能力,以独立操纵两个dI1轴突双侧种群的生长速率。其次,我们通过单方面消融鸡胚脊髓培养外植体中的dI1种群来检验假定的双向相互作用的需求。出人意料的是,我们没有发现双边dI1轴突相互作用的证据,而是dI1轴突似乎彼此独立地投射。

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  • 年(卷),期 -1(8),4
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  • 页码 e62977
  • 总页数 8
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