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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Sequential development of electrical and chemical synaptic connections generates a specific behavioral circuit in the leech.
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Sequential development of electrical and chemical synaptic connections generates a specific behavioral circuit in the leech.

机译:电气和化学突触连接的顺序发展会在水generates中产生特定的行为回路。

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摘要

Neuronal circuits form during embryonic life, even before synapses are completely mature. Developmental changes can be quantitative (e.g., connections become stronger and more reliable) or qualitative (e.g., synapses form, are lost, or switch from electrical to chemical or from excitatory to inhibitory). To explore how these synaptic events contribute to behavioral circuits, we have studied the formation of a circuit that produces local bending (LB) behavior in leech embryos. This circuit is composed of three layers of neurons: mechanosensory neurons, interneurons, and motor neurons. The only inhibition in this circuit is in the motor neuron layer; it allows the animal to contract on one side while relaxing the opposite side. LB develops in two stages: initially touching the body wall causes circumferential indentation (CI), an embryonic behavior in which contraction takes place around the whole perimeter of the segment touched; one or 2 d later, the same touch elicits adult-like LB. Application of bicuculline methiodide in embryos capable of LB switched the behavior back into CI, indicating that the development of GABAergic connections turns CI into LB. Using voltage-sensitive dyes and electrophysiological recordings, we found that electrical synapses were present early and produced CI. Inhibition appeared later, shaping the circuit that was already connected by electrical synapses and producing the adult behavior, LB.
机译:神经元回路在胚胎生命中甚至在突触完全成熟之前就形成了。发展变化可以是定量的(例如,连接变得更牢固和更可靠)或定性的(例如,突触形成,丢失,或从电学转变为化学或从兴奋性转变为抑制性)。为了探索这些突触事件如何促进行为回路,我们研究了在水ech胚胎中产生局部弯曲(LB)行为的回路的形成。该回路由三层神经元组成:机械感觉神经元,中间神经元和运动神经元。该回路中唯一的抑制作用是在运动神经元层中。它允许动物在一侧收缩,同时放松另一侧。 LB的发展分为两个阶段:最初接触体壁会导致圆周凹痕(CI),这是一种胚胎行为,其中收缩发生在所接触部分的整个周围。一或两天后,相同的触感会诱发成年大鼠的LB。在具有LB能力的胚胎中使用双小分子甲硫氨酸可将行为转换回CI,表明GABA能连接的发展将CI转变为LB。使用电压敏感染料和电生理记录,我们发现电突触出现较早并产生CI。抑制作用随后出现,使已经通过电突触连接的电路成形并产生成人行为LB。

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