Tosney K W, Landmesser L T
J Neurosci. 1985 Sep;5(9):2336-44. doi: 10.1523/JNEUROSCI.05-09-02336.1985.
During development, chick lumbosacral motoneurons have been reported to form precise topographic projections within the limb from the time of initial outgrowth. This observation implies, first, that motoneurons select the appropriate muscle nerve pathway and, second, that they restrict their ramification within the primary uncleaved muscle masses to appropriate regions. Several reports based on electrophysiology and orthograde horseradish peroxidase (HRP) labeling have shown muscle nerve pathway selection to be fairly precise. However, studies based on retrograde labeling with HRP have produced conflicting reports on the extent to which vertebrate motoneurons make projection errors. Since it is difficult to distinguish between true projection errors and HRP leakage when using retrograde labeling, we decided to assess the distribution of labeled growth cones in 25-micron serial plastic sections, following orthograde labeling of identifiable subpopulations of motoneurons during the period of initial axon outgrowth. Examination of a large number of muscle nerves revealed no segmentally inappropriate axons, confirming earlier reports that muscle nerve pathway selection is very accurate. In addition, we observed that growth cones take widely divergent trajectories into the same muscle nerve, suggesting that growth cones are responding independently to some specific environmental cue rather than being passively channeled at this point. The distribution of labeled growth cones within the muscle masses provided direct evidence that motoneurons did not at any time project to obviously inappropriate muscle regions.(ABSTRACT TRUNCATED AT 250 WORDS)
在发育过程中,据报道鸡的腰骶运动神经元从最初长出时起就在肢体内部形成精确的拓扑投射。这一观察结果首先意味着运动神经元选择了合适的肌肉神经通路,其次意味着它们将在未分裂的主要肌肉团块内的分支限制在适当区域。基于电生理学和正向辣根过氧化物酶(HRP)标记的几份报告表明,肌肉神经通路的选择相当精确。然而,基于HRP逆行标记的研究对于脊椎动物运动神经元产生投射错误的程度给出了相互矛盾的报告。由于在使用逆行标记时难以区分真正的投射错误和HRP泄漏,我们决定在轴突最初长出期间对可识别的运动神经元亚群进行正向标记后,在25微米连续塑料切片中评估标记生长锥的分布。对大量肌肉神经的检查未发现节段性不适当的轴突,证实了早期关于肌肉神经通路选择非常准确的报告。此外,我们观察到生长锥进入同一肌肉神经时会采取广泛不同的轨迹,这表明生长锥此时是独立地对某些特定环境线索做出反应,而不是被被动引导。肌肉团块内标记生长锥的分布提供了直接证据,表明运动神经元在任何时候都不会投射到明显不适当的肌肉区域。(摘要截断于250字)