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A Large-Scale Behavioral Screen to Identify Neurons Controlling Motor Programs in the Drosophila Brain

机译:大型行为屏幕,以识别果蝇脑中控制运动程序的神经元。

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Drosophila is increasingly used for understanding the neural basis of behavior through genetically targeted manipulation of specific neurons. The primary approach in this regard has relied on the suppression of neuronal activity. Here, we report the results of a novel approach to find and characterize neural circuits by expressing neuronal activators to stimulate subsets of neurons to induce behavior. Classical electrophysiological studies demonstrated that stimulation of command neurons could activate neural circuits to trigger fixed action patterns. Our method was designed to find such command neurons for diverse behaviors by screening flies in which random subsets of brain cells were activated. We took advantage of the large collection of Gal4 lines from the NP project and crossed 835 Gal4 strains with relatively limited Gal4 expression in the brain to flies carrying a UAS transgene encoding TRPM8, a cold-sensitive ion channel. Low temperatures opened the TRPM8 channel in Gal4-expressing cells, leading to their excitation, and in many cases induced overt behavioral changes in adult flies. Paralysis was reproducibly observed in the progeny of crosses with 84 lines, whereas more specific behaviors were induced with 24 other lines. Stimulation performed using the heat-activated channel, TrpA1, resulted in clearer and more robust behaviors, including flight, feeding, and egg-laying. Through follow-up studies starting from this screen, we expect to find key components of the neural circuits underlying specific behaviors, thus providing a new avenue for their functional analysis.
机译:果蝇越来越多地用于通过基因靶向操作特定神经元来理解行为的神经基础。在这方面的主要方法依赖于神经元活性的抑制。在这里,我们报告通过表达神经元激活剂刺激神经元子集以诱导行为来发现和表征神经回路的新方法的结果。经典的电生理研究表明,对命令神经元的刺激可以激活神经回路以触发固定的动作模式。我们的方法旨在通过筛选苍蝇(其中脑细胞的随机子集被激活)来发现这种行为神经元以实现多种行为。我们利用了来自NP项目的大量Gal4系的优势,并将835个Gal4株在大脑中具有相对有限的Gal4株杂交到了携带编码TRPM8(一种冷敏感离子通道)的UAS转基因的果蝇。低温打开了表达Gal4的细胞中的TRPM8通道,导致它们被激发,并且在许多情况下诱导成年果蝇的明显行为改变。在84个品系的杂交后代中可再现地观察到瘫痪,而在其他24个品系中诱导出更具体的行为。使用热激活通道TrpA1进行的刺激导致更清晰,更健壮的行为,包括飞行,进食和产卵。通过从此屏幕开始的后续研究,我们希望找到特定行为基础的神经回路的关键组件,从而为其功能分析提供一条新途径。

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