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果蝇大脑中苦味处理的单个成对神经元的鉴定。

Identification of a Single Pair of Interneurons for Bitter Taste Processing in the Drosophila Brain.

机构信息

National Centre for Biological Sciences, Tata Institute for Fundamental Research, Bangalore, India.

Department of Molecular and Cell Biology, University of California, Berkeley, Berkeley, CA, USA.

出版信息

Curr Biol. 2018 Mar 19;28(6):847-858.e3. doi: 10.1016/j.cub.2018.01.084. Epub 2018 Mar 1.

Abstract

Drosophila has become an excellent model system for investigating the organization and function of the gustatory system due to the relatively simple neuroanatomical organization of its brain and the availability of powerful genetic and transgenic technology. Thus, at the molecular and cellular levels, a great deal of insight into the peripheral detection and coding of gustatory information has already been attained. In contrast, much less is known about the central neural circuits that process this information and induce behaviorally appropriate motor output. Here, we combine functional behavioral tests with targeted transgene expression through specific driver lines to identify a single bilaterally homologous pair of bitter-sensitive interneurons that are located in the subesophageal zone of the brain. Anatomical and functional data indicate that these interneurons receive specific synaptic input from bitter-sensitive gustatory receptor neurons. Targeted transgenic activation and inactivation experiments show that these bitter-sensitive interneurons can largely suppress the proboscis extension reflex to appetitive stimuli, such as sugar and water. These functional experiments, together with calcium-imaging studies and calcium-modulated photoactivatable ratiometric integrator (CaMPARI) labeling, indicate that these first-order local interneurons play an important role in the inhibition of the proboscis extension reflex that occurs in response to bitter tastants. Taken together, our studies present a cellular identification and functional characterization of a key gustatory interneuron in the bitter-sensitive gustatory circuitry of the adult fly.

摘要

果蝇由于其大脑具有相对简单的神经解剖结构,以及强大的遗传和转基因技术,已成为研究味觉系统的组织和功能的优秀模式生物。因此,在分子和细胞水平上,已经对味觉信息的外周检测和编码有了很多的了解。相比之下,对于处理这些信息并诱导行为适当的运动输出的中枢神经回路,人们知之甚少。在这里,我们结合功能行为测试和通过特定驱动线的靶向转基因表达,鉴定了一对位于脑食管区的苦味敏感中间神经元,它们在脑的两侧具有同源性。解剖学和功能数据表明,这些中间神经元从苦味敏感的味觉受体神经元接收特定的突触输入。靶向转基因激活和失活实验表明,这些苦味敏感的中间神经元可以在很大程度上抑制对甜味刺激(如糖和水)的伸舌反射。这些功能实验,以及钙成像研究和钙调制光激活比率积分器(CaMPARI)标记,表明这些一级局部中间神经元在对苦味味觉的反应中抑制伸舌反射中发挥重要作用。总之,我们的研究提出了一种在成年果蝇苦味敏感味觉回路中的关键味觉中间神经元的细胞鉴定和功能特征。

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