首页> 外文期刊>The Journal of Comparative Neurology >Genetic dissection of neural circuit anatomy underlying feeding behavior in Drosophila: distinct classes of hugin-expressing neurons.
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Genetic dissection of neural circuit anatomy underlying feeding behavior in Drosophila: distinct classes of hugin-expressing neurons.

机译:果蝇进食行为的神经回路解剖结构的遗传解剖:hugin表达神经元的不同类别。

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摘要

The hugin gene of Drosophila encodes a neuropeptide with homology to mammalian neuromedin U. The hugin-expressing neurons are localized exclusively to the subesophageal ganglion of the central nervous system and modulate feeding behavior in response to nutrient signals. These neurons send neurites to the protocerebrum, the ventral nerve cord, the ring gland, and the pharynx and may interact with the gustatory sense organs. In this study, we have investigated the morphology of the hugin neurons at a single-cell level by using clonal analysis. We show that single cells project to only one of the four major targets. In addition, the neurites of the different hugin cells overlap in a specific brain region lateral to the foramen of the esophagus, which could be a new site of neuropeptide release for feeding regulation. Our study reveals novel complexity in the morphology of individual hugin neurons, which has functional implication for how they coordinate feeding behavior and growth.
机译:果蝇的hugin基因编码一种与哺乳动物神经调节素U具有同源性的神经肽。表达hugin的神经元仅定位于中枢神经系统的食管下神经节,并响应营养信号来调节进食行为。这些神经元将神经突发送到前脑,腹神经索,环腺和咽部,并可能与味觉器官相互作用。在这项研究中,我们已经通过使用克隆分析研究了单细胞水平上的hugin神经元的形态。我们显示单个单元格投射到四个主要目标之一。此外,不同的hugin细胞的神经突在食管孔旁的特定大脑区域重叠,这可能是神经肽释放的新位点,用于进食调节。我们的研究揭示了单个hugin神经元形态的复杂性,这对于它们如何协调进食行为和生长具有功能意义。

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