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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >An olfactory circuit increases the fidelity of visual behavior.
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An olfactory circuit increases the fidelity of visual behavior.

机译:嗅觉回路增加了视觉行为的保真度。

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摘要

Multimodal integration allows neural circuits to be activated in a behaviorally context-specific manner. In the case of odor plume tracking by Drosophila, an attractive odorant increases the influence of yaw-optic flow on steering behavior in flight, which enhances visual stability reflexes, resulting in straighter flight trajectories within an odor plume. However, it is not well understood whether context-specific changes in optomotor behavior are the result of an increased sensitivity to motion inputs (e.g., through increased visual attention) or direct scaling of motor outputs (i.e., increased steering gain). We address this question by examining the optomotor behavior of Drosophila melanogaster in a tethered flight assay and demonstrate that whereas olfactory cues decrease the gain of the optomotor response to sideslip optic flow, they concomitantly increase the gain of the yaw optomotor response by enhancing the animal's ability to follow transient visual perturbations. Furthermore, ablating the mushroom bodies (MBs) of the fly brain via larval hydroxyurea (HU) treatment results in a loss of olfaction-dependent increase in yaw optomotor fidelity. By expressing either tetanus toxin light chain or diphtheria toxin in gal4-defined neural circuits, we were able to replicate the loss of function observed in the HU treatment within the lines expressing broadly in the mushroom bodies, but not within specific mushroom body lobes. Finally, we were able to genetically separate the yaw responses and sideslip responses in our behavioral assay. Together, our results implicate the MBs in a fast-acting, memory-independent olfactory modification of a visual reflex that is critical for flight control.
机译:多峰集成允许神经回路以行为特定于上下文的方式激活。在果蝇跟踪气味羽流的情况下,有吸引力的气味剂会增加偏航光流对飞行中转向行为的影响,从而增强视觉稳定性反射,从而导致气味羽流内的飞行轨迹更直。然而,人们尚不清楚光机行为的特定于上下文的变化是由于对运动输入的灵敏度增加(例如,通过增加视觉注意力)还是电动机输出的直接缩放(即,增加的转向增益)的结果。我们通过在束缚飞行试验中检查果蝇的视光行为解决了这个问题,并证明了嗅觉提示会降低对侧滑视光流的视光响应的增益,但它们却通过增强动物的能力而增加了偏航视光响应的增益。跟随短暂的视觉干扰。此外,通过幼虫羟基脲(HU)处理消融蝇脑的蘑菇体(MBs)会导致失去依赖于嗅觉的偏航光保真度。通过在gal4定义的神经回路中表达破伤风毒素轻链或白喉毒素,我们能够在HU处理中在蘑菇体中广泛表达的谱系中复制观察到的功能丧失,但不能在特定蘑菇体叶中复制。最后,我们能够在行为分析中将偏航响应和侧滑响应遗传分离。总之,我们的结果将MB暗示为对飞行控制至关重要的视觉反射的快速反应,独立于记忆的嗅觉修饰。

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