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A gustatory second-order neuron that connects sucrose-sensitive primary neurons and a distinct region of the gnathal ganglion in the Drosophila brain

机译:连接果糖敏感的初级神经元和果蝇脑中神经节神经节不同区域的味觉二阶神经元

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摘要

Although the gustatory system provides animals with sensory cues important for food choice and other critical behaviors, little is known about neural circuitry immediately following gustatory sensory neurons (GSNs). Here, we identify and characterize a bilateral pair of gustatory second-order neurons in Drosophila. Previous studies identified GSNs that relay taste information to distinct subregions of the primary gustatory center (PGC) in the gnathal ganglia (GNG). To identify candidate gustatory second-order neurons (G2Ns) we screened ~5,000 GAL4 driver strains for lines that label neural fibers innervating the PGC. We then combined GRASP (GFP reconstitution across synaptic partners) with presynaptic labeling to visualize potential synaptic contacts between the dendrites of the candidate G2Ns and the axonal terminals of Gr5a-expressing GSNs, which are known to respond to sucrose. Results of the GRASP analysis, followed by a single cell analysis by FLPout recombination, revealed a pair of neurons that contact Gr5a axon terminals in both brain hemispheres, and send axonal arborizations to a distinct region outside the PGC but within the GNG. To characterize the input and output branches, respectively, we expressed fluorescence-tagged acetylcholine receptor subunit (Dα7) and active-zone marker (Brp) in the G2Ns. We found that G2N input sites overlaid GRASP-labeled synaptic contacts to Gr5a neurons, while presynaptic sites were broadly distributed throughout the neurons’ arborizations. GRASP analysis and further tests with the Syb-GRASP method suggested that the identified G2Ns receive synaptic inputs from Gr5a-expressing GSNs, but not Gr66a-expressing GSNs, which respond to caffeine. The identified G2Ns relay information from Gr5a-expressing GSNs to distinct regions in the GNG, and are distinct from other, recently identified gustatory projection neurons, which relay information about sugars to a brain region called the antennal mechanosensory and motor center (AMMC). Our findings suggest unexpected complexity for taste information processing in the first relay of the gustatory system.
机译:尽管味觉系统为动物提供了对食物选择和其他关键行为重要的感觉线索,但对味觉感觉神经元(GSN)之后的神经回路知之甚少。在这里,我们确定和表征果蝇中的双侧味觉二级神经元对。先前的研究确定了GSN,这些GSN将味道信息传递到了神经节(GNG)的主要味觉中心(PGC)的不同子区域。为了识别候选味觉二阶神经元(G2Ns),我们筛选了5,000种GAL4驱动株,寻找标记神经支配PGC的神经纤维的品系。然后,我们将GRASP(跨突触伙伴的GFP重组)与突触前标记结合起来,以可视化候选G2Ns的树突与表达Gr5a的GSN的轴突末端之间的潜在突触接触,已知它们对蔗糖有反应。 GRASP分析的结果,然后是通过FLPout重组进行的单细胞分析,揭示了一对神经元,它们与两个脑半球的Gr5a轴突末端接触,并将轴突乔化发送到PGC以外但在GNG内的不同区域。为了表征输入和输出分支,我们分别在G2Ns中表达了荧光标记的乙酰胆碱受体亚基(Dα7)和活性区标记(Brp)。我们发现,G2N输入位点覆盖了GRASP标记的与Gr5a神经元的突触接触,而突触前位点广泛分布于整个神经元的树突中。 GRASP分析和使用Syb-GRASP方法进行的进一步测试表明,鉴定出的G2Ns从表达Gr5a的GSNs接收突触输入,但从表达Gr66a的GSNs不接收咖啡因。鉴定出的G2N将信息从表达Gr5a的GSN传递到GNG中的不同区域,并且与其他最近鉴定出的味觉投射神经元不同,后者将糖的信息传递到称为触角机械感觉和运动中心(AMMC)的大脑区域。我们的发现表明,味觉系统的第一中继中味觉信息处理的意外复杂性。

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