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首页> 外文期刊>Nature Communications >Dedicated photoreceptor pathways in Drosophila larvae mediate navigation by processing either spatial or temporal cues
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Dedicated photoreceptor pathways in Drosophila larvae mediate navigation by processing either spatial or temporal cues

机译:果蝇幼虫中专用的感光途径通过处理时空线索来调节导航。

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To integrate changing environmental cues with high spatial and temporal resolution is critical for animals to orient themselves. Drosophila larvae show an effective motor program to navigate away from light sources. How the larval visual circuit processes light stimuli to control navigational decision remains unknown. The larval visual system is composed of two sensory input channels, Rhodopsin5 (Rh5) and Rhodopsin6 (Rh6) expressing photoreceptors (PRs). We here characterize how spatial and temporal information are used to control navigation. Rh6-PRs are required to perceive temporal changes of light intensity during head casts, while Rh5-PRs are required to control behaviors that allow navigation in response to spatial cues. We characterize how distinct behaviors are modulated and identify parallel acting and converging features of the visual circuit. Functional features of the larval visual circuit highlight the principle of how early in a sensory circuit distinct behaviors may be computed by partly overlapping sensory pathways.
机译:将变化的环境线索与高时空分辨率整合在一起对于动物自我定位至关重要。果蝇幼虫表现出有效的运动程序,可以远离光源。幼虫视觉回路如何处理光刺激以控制导航决策仍然未知。幼虫视觉系统由两个感觉输入通道组成,即表达光感受器(PR)的视紫红质5(Rh5)和视紫红质6(Rh6)。我们在这里描述了如何使用空间和时间信息来控制导航。 Rh6-PR需要感知头部投射期间光强度的时间变化,而Rh5-PR需要控制行为以响应空间提示进行导航。我们表征了如何调制不同的行为,并确定视觉电路的并行作用和会聚特征。幼虫视觉回路的功能特征突出了原理,即在感觉回路中多早可以通过部分重叠的感觉途径来计算不同的行为。

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