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PNAS Plus: Dissection of the Drosophila neuropeptide F circuit using a high-throughput two-choice assay

机译:PNAS Plus:使用高通量二选法分析果蝇神经肽F回路

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摘要

In their classic experiments, Olds and Milner showed that rats learn to lever press to receive an electric stimulus in specific brain regions. This led to the identification of mammalian reward centers. Our interest in defining the neuronal substrates of reward perception in the fruit fly Drosophila melanogaster prompted us to develop a simpler experimental approach wherein flies could implement behavior that induces self-stimulation of specific neurons in their brains. The high-throughput assay employs optogenetic activation of neurons when the fly occupies a specific area of a behavioral chamber, and the flies’ preferential occupation of this area reflects their choosing to experience optogenetic stimulation. Flies in which neuropeptide F (NPF) neurons are activated display preference for the illuminated side of the chamber. We show that optogenetic activation of NPF neuron is rewarding in olfactory conditioning experiments and that the preference for NPF neuron activation is dependent on NPF signaling. Finally, we identify a small subset of NPF-expressing neurons located in the dorsomedial posterior brain that are sufficient to elicit preference in our assay. This assay provides the means for carrying out unbiased screens to map reward neurons in flies.
机译:在他们的经典实验中,奥尔兹和米尔纳(Olds and Milner)表明,老鼠学会了利用杠杆按压来在特定的大脑区域接受电刺激。这导致确定了哺乳动物奖励中心。我们对在果蝇果蝇中定义奖励知觉的神经元底物的兴趣促使我们开发了一种更简单的实验方法,其中果蝇可以实施诱导其大脑中特定神经元自我刺激的行为。当果蝇占据行为室的特定区域时,高通量分析利用神经元的光遗传学激活,而果蝇对该区域的优先占领反映了他们选择体验光遗传学刺激。激活了神经肽F(NPF)神经元的苍蝇表现出对腔室光照侧的偏爱。我们显示,NPF神经元的光遗传激活在嗅觉调节实验中是有回报的,并且NPF神经元激活的偏好取决于NPF信号传导。最后,我们确定了位于背部后脑的一小部分NPF表达神经元,足以在我们的测定中引起偏好。该测定法提供了进行无偏筛选以绘制果蝇奖励神经元的方法。

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