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一种发声鱼类内耳和听觉传出系统多巴胺能神经支配的连接性和超微结构

Connectivity and ultrastructure of dopaminergic innervation of the inner ear and auditory efferent system of a vocal fish.

作者信息

Perelmuter Jonathan T, Forlano Paul M

机构信息

Program in Behavioral and Cognitive Neuroscience, The Graduate Center, City University of New York, New York, New York, 10016.

Department of Biology, Brooklyn College, City University of New York, Brooklyn, New York, 11210.

出版信息

J Comp Neurol. 2017 Jun 15;525(9):2090-2108. doi: 10.1002/cne.24177. Epub 2017 Mar 26.

Abstract

Dopamine (DA) is a conserved modulator of vertebrate neural circuitry, yet our knowledge of its role in peripheral auditory processing is limited to mammals. The present study combines immunohistochemistry, neural tract tracing, and electron microscopy to investigate the origin and synaptic characteristics of DA fibers innervating the inner ear and the hindbrain auditory efferent nucleus in the plainfin midshipman, a vocal fish that relies upon the detection of mate calls for reproductive success. We identify a DA cell group in the diencephalon as a common source for innervation of both the hindbrain auditory efferent nucleus and saccule, the main hearing endorgan of the inner ear. We show that DA terminals in the saccule contain vesicles but transmitter release appears paracrine in nature, due to the apparent lack of synaptic contacts. In contrast, in the hindbrain, DA terminals form traditional synaptic contacts with auditory efferent neuronal cell bodies and dendrites, as well as unlabeled axon terminals, which, in turn, form inhibitory-like synapses on auditory efferent somata. Our results suggest a distinct functional role for brain-derived DA in the direct and indirect modulation of the peripheral auditory system of a vocal nonmammalian vertebrate.

摘要

多巴胺(DA)是脊椎动物神经回路中一种保守的调节因子,然而我们对其在周围听觉处理中的作用的了解仅限于哺乳动物。本研究结合免疫组织化学、神经束追踪和电子显微镜技术,研究支配内耳和后脑海听传出核的DA纤维的起源和突触特征,该研究对象是一种发声鱼类——平头光尾鲨,它依靠检测配偶叫声来实现繁殖成功。我们在间脑中鉴定出一个DA细胞群,它是后脑海听传出核和内耳主要听觉终器球囊神经支配的共同来源。我们发现,球囊中的DA终末含有囊泡,但由于明显缺乏突触接触,递质释放似乎具有旁分泌性质。相比之下,在后脑中,DA终末与听传出神经元的胞体和树突以及未标记的轴突终末形成传统的突触接触,而这些未标记的轴突终末又在听传出神经元胞体上形成类似抑制性的突触。我们的研究结果表明,脑源性DA在一种发声非哺乳动物脊椎动物的外周听觉系统的直接和间接调节中具有独特的功能作用。

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