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首页> 外文期刊>Science Advances >Mechanosensory circuits coordinate two opposing motor actions in Drosophila feeding
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Mechanosensory circuits coordinate two opposing motor actions in Drosophila feeding

机译:机械感测电路协调果蝇进食中两个相反的运动动作

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Mechanoreception detects physical forces in the senses of hearing, touch, and proprioception. Here, we show that labellar mechanoreception wires two motor circuits to facilitate and terminate Drosophila feeding. Using patch-clamp recordings, we identified mechanosensory neurons (MSNs) in taste pegs of the inner labella and taste bristles of the outer labella, both of which rely on the same mechanoreceptor, NOMPC (no mechanoreceptor potential C), to transduce mechanical deflection. Connecting with distinct brain motor circuits, bristle MSNs drive labellar spread to facilitate feeding and peg MSNs elicit proboscis retraction to terminate feeding. Bitter sense modulates these two mechanosensory circuits in opposing manners, preventing labellar spread by bristle MSNs and promoting proboscis retraction by peg MSNs. Together, these labeled-line circuits enable labellar peg and bristle MSNs to use the same mechanoreceptors to direct opposing feeding actions and differentially integrate gustatory information in shaping feeding decisions.
机译:机械感受在听觉,触觉和本体感受的意义上检测物理力。在这里,我们显示了黄斑机械感受器连接了两个电机电路,以促进和终止果蝇的进食。使用膜片钳记录,我们在内部标签的味觉钉和外部标签的味觉刷毛中识别了机械感觉神经元(MSN),这两个都依赖于相同的机械感受器NOMPC(无机械感受器电位C)来传递机械偏转。硬毛MSN与不同的大脑运动回路相连,驱使黄斑蔓延以促进进食,而MSN则引起长鼻回缩以终止进食。苦味感以相反的方式调节这两个机械感觉回路,防止刷毛MSN引起小lar扩散,并通过钉MSN促进长鼻回缩。这些标记线电路共同作用,使标记短毛和硬毛MSN可以使用相同的机械感受器来指导相反的进食动作,并在塑造进食决定时差异性地整合味觉信息。

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