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Cellular identification of water gustatory receptor neurons and their central projection pattern in Drosophila

机译:果蝇中水味受体神经元的细胞鉴定及其中心投射模式

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Water perception is important for insects, because they are particularly vulnerable to water loss because their body size is small. In Drosophila, gustatory receptor neurons are located at the base of the taste sensilla on the labellum, tarsi, and wing margins. One of the gustatory receptor neurons in typical sensilla is known to respond to water. To reveal the neural mechanisms of water perception in Drosophila, it is necessary to identify water receptor neurons and their projection patterns. We used a Gal4 enhancer trap strain in which GAL4 is expressed in a single gustatory receptor neuron in each sensillum on the labellum. We investigated the function of these neurons by expressing the upstream activating sequence transgenes, shibire~(ts1), tetanus toxin light chain, or diphtheria toxin A chain. Results from the proboscis extension reflex test and electrophysiological recordings indicated that the GAL4-expressing neurons respond to water. We show here that the water receptor neurons project to a specific region in the subesophageal ganglion, thus revealing the water taste sensory map in Drosophila.
机译:水的感知对昆虫很重要,因为它们的体型很小,因此特别容易失水。在果蝇中,味觉感受器神经元位于味觉的底部,位于唇部,睑板和翼缘。已知典型感官中的味觉受体神经元之一对水有反应。为了揭示果蝇中水感知的神经机制,有必要确定水受体神经元及其投射方式。我们使用了Gal4增强子陷阱菌株,其中GAL4在红唇上每个感觉区的单个味觉受体神经元中表达。我们通过表达上游激活序列转基因,shibire〜(ts1),破伤风毒素轻链或白喉毒素A链来研究这些神经元的功能。长鼻反射试验和电生理记录的结果表明,表达GAL4的神经元对水有反应。我们在这里显示水受体神经元投射到食管下神经节的特定区域,从而揭示了果蝇中的水味感官图。

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