Tosney K W, Landmesser L T
J Neurosci. 1985 Sep;5(9):2345-58. doi: 10.1523/JNEUROSCI.05-09-02345.1985.
We quantitatively analyzed several features of orthogradely labeled peripheral growth cones in the lumbosacral region of the chick embryo. We compared motoneuron growth cones in regions where they appear to express specific directional preferences (the plexus region and regions where muscle nerves diverge from main nerve trunks), which we operationally defined as "decision regions," to motoneuron growth cones in other pathway regions (the spinal nerve, nerve trunk, and muscle nerve pathways) which we termed, for contrast, "non-decision region." We found that motoneuron growth cones are larger, more lamellepodial, and have more complex trajectories in decision regions. Sensory growth cone populations, which are thought to be dependent upon motoneurons for outgrowth (Landmesser, L., and M. Honig (1982) Soc. Neurosci. Abstr. 8: 929), do not enlarge or become more lamellepodial in motoneuron decision regions, suggesting that this local environment does not affect all species of growth cones equally and that the alterations in motoneuron growth cones in these regions may be relevant to their specific guidance. In addition, the resemblance between the sensory population and other closely fasciculating growth cones lends support to the suggestion that sensory neurons utilize motoneuron neurites as a substratum. We suggest that the convoluted trajectories, enlarged size, and more lamellepodial morphology of motoneuron growth cones in decision regions is either related directly to the presence of specific cues that guide motoneurons or to some aspect of this environment that allows them to respond to specific cues.
我们对鸡胚腰骶部正向标记的外周生长锥的几个特征进行了定量分析。我们将运动神经元生长锥在似乎表现出特定方向偏好的区域(神经丛区域以及肌肉神经从主要神经干分出的区域),我们将其操作性地定义为“决策区域”,与其他通路区域(脊神经、神经干和肌肉神经通路)中的运动神经元生长锥进行比较,相比之下,我们将后者称为“非决策区域”。我们发现,运动神经元生长锥在决策区域更大、板状伪足更多,并且轨迹更复杂。感觉生长锥群体,被认为其生长依赖于运动神经元(兰德梅塞尔,L.,和M. 霍尼格(1982年)《神经科学学会摘要》8:929),在运动神经元决策区域不会增大或变得板状伪足更多,这表明这种局部环境对所有生长锥种类的影响并不相同,并且这些区域中运动神经元生长锥的改变可能与其特定导向有关。此外,感觉群体与其他紧密成束的生长锥之间的相似性支持了感觉神经元利用运动神经元神经突作为基质的观点。我们认为,决策区域中运动神经元生长锥的复杂轨迹、增大的尺寸和更多的板状伪足形态,要么直接与引导运动神经元的特定线索的存在有关,要么与这种环境中允许它们对特定线索做出反应的某些方面有关。