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两层神经网络控制果蝇的快速前进运动。

A two-layer neural circuit controls fast forward locomotion in Drosophila.

机构信息

Department of neurology of the fourth Hospital and School of Brain Science and Brain Medicine, Zhejiang University School of Medicine, Hangzhou 310058, China; Liangzhu Laboratory, MOE Frontier Science Center for Brain Science and Brain-machine Integration, State Key Laboratory of Brain-machine Intelligence, Zhejiang University, 1369 West Wenyi Road, Hangzhou 311121, China; NHC and CAMS Key Laboratory of Medical Neurobiology, Zhejiang University, Hangzhou 310058, China; Zhejiang Lab, Hangzhou 311121, China.

Qiushi Academy for Advanced Studies, Zhejiang University, Hangzhou, China; Zhejiang Lab, Hangzhou 311121, China.

出版信息

Curr Biol. 2024 Aug 5;34(15):3439-3453.e5. doi: 10.1016/j.cub.2024.06.060. Epub 2024 Jul 24.

Abstract

Fast forward locomotion is critical for animal hunting and escaping behaviors. However, how the underlying neural circuit is wired at synaptic resolution to decide locomotion direction and speed remains poorly understood. Here, we identified in the ventral nerve cord (VNC) a set of ascending cholinergic neurons (AcNs) to be command neurons capable of initiating fast forward peristaltic locomotion in Drosophila larvae. Targeted manipulations revealed that AcNs are necessary and sufficient for fast forward locomotion. AcNs can activate their postsynaptic partners, A01j and A02j; both are interneurons with locomotory rhythmicity. Activated A01j neurons form a posterior-anteriorly descendent gradient in output activity along the VNC to launch forward locomotion from the tail. Activated A02j neurons exhibit quicker intersegmental transmission in activity that enables fast propagation of motor waves. Our work revealed a global neural mechanism that coordinately controls the launch direction and propagation speed of Drosophila locomotion, furthering the understanding of the strategy for locomotion control.

摘要

快速前进运动对于动物的捕猎和逃避行为至关重要。然而,在突触分辨率下,决定运动方向和速度的潜在神经回路是如何连接的,目前仍知之甚少。在这里,我们在腹神经索(VNC)中鉴定出一组上升的胆碱能神经元(AcNs),它们是能够在果蝇幼虫中引发快速前进蠕动运动的命令神经元。靶向操作表明 AcNs 是快速前进运动所必需的和充分的。AcNs 可以激活它们的突触后伙伴 A01j 和 A02j;两者都是具有运动节律性的中间神经元。激活的 A01j 神经元在 VNC 中沿前后方向形成输出活动的下降梯度,从而从尾部发起向前运动。激活的 A02j 神经元在活动中表现出更快的节间传递,从而使运动波快速传播。我们的工作揭示了一个协调控制果蝇运动启动方向和传播速度的全局神经机制,进一步加深了对运动控制策略的理解。

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