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利用单细胞标记揭示接触化学感觉神经元中的一种新型性别差异。

A novel sex difference in contact chemosensory neurons unveiled using single cell labeling.

作者信息

Kimura Ken-Ichi, Urushizaki Akira, Sato Chiaki, Yamamoto Daisuke

机构信息

a Laboratory of Biology , Hokkaido University of Education, Sapporo Campus , Sapporo , Japan.

b Neuro-Network Evolution Project, Advanced ICT Research Institute , National Institute of Information and Communications Technology , Kobe , Japan.

出版信息

J Neurogenet. 2019 Mar-Jun;33(2):116-124. doi: 10.1080/01677063.2018.1531858. Epub 2018 Nov 20.

Abstract

Among the sensory modalities involved in controlling mating behavior in , contact sex pheromones play a primary role. The key receptor neurons for contact sex pheromones are located on the forelegs, which are activated in males upon touching the female abdomen during tapping events in courtship actions. A ()-positive ( [+]) male-pheromone sensing cell (M-cell) and a [+] female-pheromone sensing cell (F-cell) are paired in a sensory bristle on the legs, and some [+] chemoreceptor axons project across the midline in the thoracic neuromere in males but not in females. However, the receptor cells that form sexually dimorphic axon terminals in the thoracic ganglia remain unknown. By generating labeled single-cell clones, we show that only a specific subset of [+] chemosensory neurons have axons that cross the midline in males. We further demonstrate that there exist two male-specific bristles, each harboring two chemosensory neurons; neither of which exhibits midline crossing, a masculine characteristic. This study reveals hitherto unrecognized sex differences in chemosensory neurons, imposing us to reinvestigate the pheromone input pathways that impinge on the central courtship circuit.

摘要

在参与控制[物种名称未给出]交配行为的感觉模态中,接触性信息素起着主要作用。接触性信息素的关键受体神经元位于前腿上,在求偶行为的轻拍过程中,雄性接触雌性腹部时这些神经元会被激活。一个()阳性([+])的雄性信息素感知细胞(M细胞)和一个[+]雌性信息素感知细胞(F细胞)在腿部的一个感觉刚毛中配对,并且一些[+]化学感受器轴突在雄性的胸神经节中穿过中线,但在雌性中不穿过。然而,在胸神经节中形成性二态轴突终末的受体细胞仍然未知。通过生成标记的单细胞克隆,我们表明只有特定子集的[+]化学感觉神经元在雄性中有穿过中线的轴突。我们进一步证明存在两种雄性特异性刚毛,每种都含有两个化学感觉神经元;它们都不表现出中线交叉,这是一种雄性特征。这项研究揭示了迄今为止未被认识到的化学感觉神经元中的性别差异,促使我们重新研究影响中枢求偶回路的信息素输入途径。

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