Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge, United States.
Department of Neurobiology, Duke University, Durham, United States.
Elife. 2021 Apr 27;10:e67291. doi: 10.7554/eLife.67291.
Premotor circuits in the brainstem project to pools of orofacial motoneurons to execute essential motor action such as licking, chewing, breathing, and in rodent, whisking. Previous transsynaptic tracing studies only mapped orofacial premotor circuits in neonatal mice, but the adult circuits remain unknown as a consequence of technical difficulties. Here, we developed a three-step monosynaptic transsynaptic tracing strategy to identify premotor neurons controlling vibrissa, tongue protrusion, and jaw-closing muscles in the adult mouse. We registered these different groups of premotor neurons onto the Allen mouse brain common coordinate framework (CCF) and consequently generated a combined 3D orofacial premotor atlas, revealing unique spatial organizations of distinct premotor circuits. We further uncovered premotor neurons that simultaneously innervate multiple motor nuclei and, consequently, are likely to coordinate different muscles involved in the same orofacial motor actions. Our method for tracing adult premotor circuits and registering to Allen CCF is generally applicable and should facilitate the investigations of motor controls of diverse behaviors.
脑桥中的运动前回路投射到口面运动神经元群,以执行基本的运动行为,如舔舐、咀嚼、呼吸,在啮齿动物中还包括胡须运动。先前的突触传递追踪研究仅在新生小鼠中绘制了口面运动前回路图谱,但由于技术困难,成年回路仍不清楚。在这里,我们开发了一个三步单突触突触传递追踪策略,以鉴定成年小鼠控制触须、舌头突出和下颌闭合肌肉的运动前神经元。我们将这些不同的运动前神经元注册到 Allen 小鼠脑共坐标框架(CCF)中,从而生成了一个综合的 3D 口面运动前图谱,揭示了不同运动前回路的独特空间组织。我们进一步发现了同时支配多个运动核的运动前神经元,因此,这些神经元可能协调参与同一口面运动行为的不同肌肉。我们用于追踪成年运动前回路并注册到 Allen CCF 的方法具有普遍性,应有助于研究不同行为的运动控制。