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In vivo odorant input induces spike timing-dependent plasticity of glutamatergic synapses in developing zebrafish olfactory bulb

机译:在体内气味输入中,在开发斑马鱼嗅灯泡中诱导谷氨酸突突关的穗状态依赖性可塑性

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摘要

Early odorant experience and neural activity are essential for refining developing neural connections. Although neural activity-induced synaptic plasticity is one of the most important cellular mechanisms underlying the refinement of neural circuits, whether and how natural odorant experience induces long-term plasticity in the olfactory bulb remains unknown. In vivo perforated whole-cell recording from mitral cells (MCs) in larval zebrafish showed that odorant experience induced persistent modification of developing olfactory bulb circuits via spike timing-dependent plasticity (STDP). Repetitive odorant stimuli paired with postsynaptic spiking in a critical time window (pre-post, positive timing) resulted in persistent enhancement of glutamatergic inputs from olfactory sensory neurons, but long-term depression within the opposite time window (post-pre, negative timing). Furthermore, spike-timingdependent potentiation (tLTP) in STDP induced by repetitive odorant stimulation had similar cellular processes to those of electrical stimulation-induced tLTP. Finally, odorant input induced STDP required the activation of postsynaptic N-methyl-D-aspartate receptors (NMDARs). Thus, the NMDAR is likely to be a postsynaptic coincidence detector responsible for the sensory experience-dependent refinement of developing connections. (C) 2020 Elsevier Inc. All rights reserved.
机译:早期的气味经验和神经活动对于精炼发育神经连接至关重要。虽然神经活性诱导的突触塑性是神经电路细化的最重要的细胞机制之一,但自然的气味经验是如何在嗅灯泡中引起长期可塑性的最重要的。在幼虫斑马鱼的二尖瓣细胞(MCS)中的体内穿孔全细胞记录表明,通过尖峰时序依赖性塑性(STDP)诱导嗅觉改变液体灯泡电路的持续修改。重复的气味刺激与临界时间窗口(柱子前,正时时序)配对导致嗅觉增强来自嗅觉感觉神经元的谷氨酸谷氨酸输入,但在相反的时间窗口内长期凹陷(后,负定时) 。此外,通过重复的气味刺激诱导的STDP中的峰时依赖性增强(TLTP)对电刺激诱导的TLTP的细胞过程具有类似的细胞过程。最后,气味输入诱导的STDP需要激活后腹膜N-甲基-D-天冬氨酸受体(NMDARS)。因此,NMDAR可能是突触后符合探测器,其负责发育联系的感官经验依赖性改进。 (c)2020 Elsevier Inc.保留所有权利。

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