A tonically active master neuron modulates mutually exclusive motor states at two timescales

紧张活跃的主神经元在两个时间尺度上调节相互排斥的运动状态

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作者:Jun Meng, Tosif Ahamed, Bin Yu, Wesley Hung, Sonia Ei Mouridi, Zezhen Wang, Yongning Zhang, Quan Wen, Thomas Boulin, Shangbang Gao, Mei Zhen

Abstract

Continuity of behaviors requires animals to make smooth transitions between mutually exclusive behavioral states. Neural principles that govern these transitions are not well understood. Caenorhabditis elegans spontaneously switch between two opposite motor states, forward and backward movement, a phenomenon thought to reflect the reciprocal inhibition between interneurons AVB and AVA. Here, we report that spontaneous locomotion and their corresponding motor circuits are not separately controlled. AVA and AVB are neither functionally equivalent nor strictly reciprocally inhibitory. AVA, but not AVB, maintains a depolarized membrane potential. While AVA phasically inhibits the forward promoting interneuron AVB at a fast timescale, it maintains a tonic, extrasynaptic excitation on AVB over the longer timescale. We propose that AVA, with tonic and phasic activity of opposite polarities on different timescales, acts as a master neuron to break the symmetry between the underlying forward and backward motor circuits. This master neuron model offers a parsimonious solution for sustained locomotion consisted of mutually exclusive motor states.

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