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果蝇黑腹果蝇初级听觉中枢投射神经元和局部神经元的组织

Organization of projection neurons and local neurons of the primary auditory center in the fruit fly Drosophila melanogaster.

作者信息

Matsuo Eriko, Seki Haruyoshi, Asai Tomonori, Morimoto Takako, Miyakawa Hiroyoshi, Ito Kei, Kamikouchi Azusa

机构信息

Graduate School of Science, Nagoya University, Nagoya, 464-8602, Japan.

School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, Hachioji, Tokyo, Japan.

出版信息

J Comp Neurol. 2016 Apr 15;524(6):1099-164. doi: 10.1002/cne.23955. Epub 2016 Jan 19.

Abstract

Acoustic communication between insects serves as an excellent model system for analyzing the neuronal mechanisms underlying auditory information processing. The detailed organization of auditory neural circuits in the brain has not yet been described. To understand the central auditory pathways, we used the brain of the fruit fly Drosophila melanogaster as a model and performed a large-scale analysis of the interneurons associated with the primary auditory center. By screening expression driver strains and performing single-cell labeling of these strains, we identified 44 types of interneurons innervating the primary auditory center. Five types were local interneurons whereas the other 39 types were projection interneurons connecting the primary auditory center with other brain regions. The projection neurons comprised three frequency-selective pathways and two frequency-embracive pathways. Mapping of their connection targets revealed that five neuropils in the brain-the wedge (WED), anterior ventrolateral protocerebrum, posterior ventrolateral protocerebrum (PVLP), saddle (SAD), and gnathal ganglia (GNG)-were intensively connected with the primary auditory center. In addition, several other neuropils, including visual and olfactory centers in the brain, were directly connected to the primary auditory center. The distribution patterns of the spines and boutons of the identified neurons suggest that auditory information is sent mainly from the primary auditory center to the PVLP, WED, SAD, GNG, and thoracico-abdominal ganglia. Based on these findings, we established the first comprehensive map of secondary auditory interneurons, which indicates the downstream information flow to parallel ascending pathways, multimodal pathways, and descending pathways.

摘要

昆虫之间的声学通讯是分析听觉信息处理背后神经元机制的绝佳模型系统。大脑中听觉神经回路的详细组织尚未得到描述。为了理解中枢听觉通路,我们以果蝇的大脑作为模型,对与初级听觉中枢相关的中间神经元进行了大规模分析。通过筛选表达驱动菌株并对这些菌株进行单细胞标记,我们鉴定出44种支配初级听觉中枢的中间神经元类型。其中5种是局部中间神经元,而其他39种是将初级听觉中枢与其他脑区相连的投射中间神经元。投射神经元包括三条频率选择性通路和两条频率包容性通路。对它们连接靶点的图谱分析显示,大脑中的五个神经纤维网——楔叶(WED)、前腹外侧原脑、后腹外侧原脑(PVLP)、鞍叶(SAD)和颚神经节(GNG)——与初级听觉中枢紧密相连。此外,大脑中的其他几个神经纤维网,包括视觉和嗅觉中枢,也直接与初级听觉中枢相连。所鉴定神经元的棘突和轴突终扣的分布模式表明,听觉信息主要从初级听觉中枢发送到PVLP、WED、SAD、GNG和胸腹神经节。基于这些发现,我们建立了第一张次级听觉中间神经元的综合图谱,该图谱显示了向下游并行上行通路、多模态通路和下行通路的信息流。

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