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Locomotory control in amphioxus larvae: new insights from neurotransmitter data

机译:文昌鱼幼虫的运动控制:来自神经递质数据的新见解

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Amphioxus larvae have a midbrain-level locomotory control center whose overall organization is known from serial TEM reconstructions. How it functions has been a puzzle, owing to uncertainty as to the transmitters used by each class of neurons, but this has recently become clearer. We summarize what is now known, and correct past misconceptions: The large paired neurons at the core of the control center are glutamatergic, and hence excitatory, the commissural neurons are GABAergic, hence probably inhibitory, and both motoneurons and ipsilateral projection neurons are cholinergic, suggesting that the latter, a class of interneurons, may be derived evolutionarily from the former. The data clarify some aspects of how fast and slow swimming are controlled and prevented from interfering with one another, but leave open the source of pacemaker activity, which could reside in the large paired neurons or circuits associated with them. A unusual type of non-synaptic junction links the fast and slow systems, but how these junctions function is open to interpretation, depending chiefly on whether they act to couple adjacent cells independent of cell type, or can have differential effects that vary with cell type. Some evolutionary implications are discussed.
机译:Amphioxus幼虫有一个中脑水平的运动控制中心,其总体组织结构可通过连续TEM重建得知。由于各类神经元使用的递质的不确定性,它如何发挥作用一直是一个难题,但是最近情况变得更加清晰。我们总结了目前已知的情况,并纠正了过去的错误观念:控制中心核心的大型配对神经元是谷氨酸能的,因此是兴奋性的,连合神经元是GABA能的,因此可能是抑制性的,运动神经元和同侧投射神经元都是胆碱能的,这表明后者是一类中间神经元,可能是从前者进化而来的。数据阐明了如何控制快速游泳和慢速游泳,以及如何防止彼此干扰,但是却使心脏起搏器活动的来源敞开了,起搏器活动可能存在于成对的大神经元或与其相关的回路中。异常类型的非突触连接连接快速系统和慢速系统,但是这些连接如何发挥作用尚待解释,这主要取决于它们是否与细胞类型无关地耦合相邻细胞,或者是否会随细胞类型而产生不同的影响。讨论了一些进化的含义。

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