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Hub-organized parallel circuits of central circadian pacemaker neurons for visual photoentrainment in Drosophila

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  • Meng-Tong Li

    (Peking University
    Peking University
    Peking University
    Peking University)

  • Li-Hui Cao

    (Peking University
    Peking University
    Peking University
    Peking University)

  • Na Xiao

    (Peking University
    Peking University
    Peking University)

  • Min Tang

    (Peking University
    Peking University
    Peking University
    Peking University)

  • Bowen Deng

    (Peking University
    Peking University)

  • Tian Yang

    (Peking University
    Peking University
    Peking University)

  • Taishi Yoshii

    (Okayama University)

  • Dong-Gen Luo

    (Peking University
    Peking University
    Peking University
    Peking University)

Abstract

Circadian rhythms are orchestrated by a master clock that emerges from a network of circadian pacemaker neurons. The master clock is synchronized to external light/dark cycles through photoentrainment, but the circuit mechanisms underlying visual photoentrainment remain largely unknown. Here, we report that Drosophila has eye-mediated photoentrainment via a parallel pacemaker neuron organization. Patch-clamp recordings of central circadian pacemaker neurons reveal that light excites most of them independently of one another. We also show that light-responding pacemaker neurons send their dendrites to a neuropil called accessary medulla (aMe), where they make monosynaptic connections with Hofbauer–Buchner eyelet photoreceptors and interneurons that transmit compound-eye signals. Laser ablation of aMe and eye removal both abolish light responses of circadian pacemaker neurons, revealing aMe as a hub to channel eye inputs to central circadian clock. Taken together, we demonstrate that the central clock receives eye inputs via hub-organized parallel circuits in Drosophila.

Suggested Citation

  • Meng-Tong Li & Li-Hui Cao & Na Xiao & Min Tang & Bowen Deng & Tian Yang & Taishi Yoshii & Dong-Gen Luo, 2018. "Hub-organized parallel circuits of central circadian pacemaker neurons for visual photoentrainment in Drosophila," Nature Communications, Nature, vol. 9(1), pages 1-14, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-06506-5
    DOI: 10.1038/s41467-018-06506-5
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    Cited by:

    1. Hailiang Li & Zhiyi Li & Xin Yuan & Yue Tian & Wenjing Ye & Pengyu Zeng & Xiao-Ming Li & Fang Guo, 2024. "Dynamic encoding of temperature in the central circadian circuit coordinates physiological activities," Nature Communications, Nature, vol. 15(1), pages 1-15, December.

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