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Competitive Disinhibition Mediates Behavioral Choice and Sequences in Drosophila

机译:竞争性去抑制介导果蝇的行为选择和序列。

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Even a simple sensory stimulus can elicit distinct innate behaviors and sequences. During sensorimotor decisions, competitive interactions among neurons that promote distinct behaviors must ensure the selection and maintenance of one behavior, while suppressing others. The circuit implementation of these competitive interactions is still an open question. By combining comprehensive electron microscopy reconstruction of inhibitory interneuron networks, modeling, electrophysiology, and behavioral studies, we determined the circuit mechanisms that contribute to the Drosophila larval sensorimotor decision to startle, explore, or performa sequence of the two in response to a mechanosensory stimulus. Together, these studies reveal that, early in sensory processing, (1) reciprocally connected feedforward inhibitory interneurons implement behavioral choice, (2) local feedback disinhibition provides positive feedback that consolidates and maintains the chosen behavior, and (3) lateral disinhibition promotes sequence transitions. The combination of these interconnected circuit motifs can implement both behavior selection and the serial organization of behaviors into a sequence.
机译:即使是简单的感觉刺激也可以引发不同的先天行为和顺序。在感觉运动决策过程中,促进不同行为的神经元之间的竞争性相互作用必须确保选择和维持一种行为,同时抑制其他行为。这些竞争性相互作用的电路实现仍然是一个悬而未决的问题。通过结合抑制中间神经元网络,建模,电生理学和行为研究的综合电子显微镜重建,我们确定了有助于果蝇幼虫感觉运动决定惊吓,探索或执行两者的序列的机制,以响应机械感觉刺激。总之,这些研究表明,在感觉处理的早期,(1)相互连接的前馈抑制中间神经元实现了行为选择;(2)局部反馈抑制作用提供了巩固和维持所选行为的正反馈;(3)侧向抑制作用促进了序列转换。这些相互连接的电路图案的组合既可以实现行为选择,又可以实现行为的序列组织。

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