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同源类命令神经元的发散连接介导果蝇的分段特异性触觉反应。

Divergent Connectivity of Homologous Command-like Neurons Mediates Segment-Specific Touch Responses in Drosophila.

机构信息

Department of Physics, Graduate School of Science, The University of Tokyo, Tokyo 113-0033, Japan.

Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, VA 20147, USA.

出版信息

Neuron. 2017 Dec 20;96(6):1373-1387.e6. doi: 10.1016/j.neuron.2017.10.030. Epub 2017 Nov 30.

Abstract

Animals adaptively respond to a tactile stimulus by choosing an ethologically relevant behavior depending on the location of the stimuli. Here, we investigate how somatosensory inputs on different body segments are linked to distinct motor outputs in Drosophila larvae. Larvae escape by backward locomotion when touched on the head, while they crawl forward when touched on the tail. We identify a class of segmentally repeated second-order somatosensory interneurons, that we named Wave, whose activation in anterior and posterior segments elicit backward and forward locomotion, respectively. Anterior and posterior Wave neurons extend their dendrites in opposite directions to receive somatosensory inputs from the head and tail, respectively. Downstream of anterior Wave neurons, we identify premotor circuits including the neuron A03a5, which together with Wave, is necessary for the backward locomotion touch response. Thus, Wave neurons match their receptive field to appropriate motor programs by participating in different circuits in different segments.

摘要

动物通过选择与刺激位置相关的行为来适应触觉刺激。在这里,我们研究了果蝇幼虫不同身体部位的感觉输入如何与不同的运动输出相关联。当头部受到触碰时,幼虫会通过向后运动来逃脱,而当尾部受到触碰时,它们会向前爬行。我们发现了一类节段性重复的二阶感觉神经元,我们将其命名为 Wave,其在前部和后部的激活分别引起向后和向前的运动。前、后 Wave 神经元向相反的方向延伸其树突,分别从前部和尾部接收感觉输入。在前部 Wave 神经元的下游,我们鉴定了包括神经元 A03a5 在内的运动前回路,A03a5 神经元与 Wave 神经元一起对于向后运动的触碰反应是必需的。因此,Wave 神经元通过参与不同节段的不同回路,将其感受野与适当的运动程序相匹配。

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