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Embryonic Origins of a Motor System:Motor Dendrites Form a Myotopic Mapin Drosophila

机译:电机系统的胚胎起源:电机枝晶形成果蝇的肌皮图谱。

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摘要

The organisational principles of locomotor networks are less well understood than those of many sensory systems, where in-growing axon terminals form a central map of peripheral characteristics. Using the neuromuscular system of the Drosophila embryo as a model and retrograde tracing and genetic methods, we have uncovered principles underlying the organisation of the motor system. We find that dendritic arbors of motor neurons, rather than their cell bodies, are partitioned into domains to form a myotopic map, which represents centrally the distribution of body wall muscles peripherally. While muscles are segmental, the myotopic map is parasegmental in organisation. It forms by an active process of dendritic growth independent of the presence of target muscles, proper differentiation of glial cells, or (in its initial partitioning) competitive interactions between adjacent dendritic domains. The arrangement of motor neuron dendrites into a myotopic map represents a first layer of organisation in the motor system. This is likely to be mirrored, at least in part, by endings of higher-order neurons from central pattern-generating circuits, which converge onto the motor neuron dendrites. These findings will greatly simplify the task of understanding how a locomotor system is assembled. Our results suggest that the cues that organise the myotopic map may be laid down early in development as the embryo subdivides into parasegmental units.
机译:运动神经网络的组织原理不如许多感觉系统的组织原理理解,在这些感觉系统中,不断增长的轴突末端形成外围特征的中心图。使用果蝇胚胎的神经肌肉系统作为模型以及逆行追踪和遗传方法,我们发现了运动系统组织基础的原理。我们发现运动神经元的树突状树突,而不是其细胞体,被划分为多个区域以形成一个肌电图,该图代表了外周中心壁肌壁的分布。虽然肌肉是分段的,但肌组织图在组织中是分段的。它是由树突生长的活跃过程形成的,而与目标肌肉的存在,胶质细胞的适当分化或相邻树突域之间的竞争相互作用无关。运动神经元树突排列成肌电图的安排代表了运动系统中组织的第一层。这可能至少部分地由来自中央模式生成电路的高阶神经元的末端反映出来,它们收敛到运动神经元树突上。这些发现将大大简化了解运动系统如何组装的任务。我们的研究结果表明,随着胚胎再细分为节段性单位,组织肌组织图的线索可能会在发育早期就被确定下来。

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