Janelia Research Campus, Howard Hughes Medical Institute, 19700 Helix Dr., Ashburn, VA 20147, USA.
Janelia Research Campus, Howard Hughes Medical Institute, 19700 Helix Dr., Ashburn, VA 20147, USA; Lingang Laboratory, Shanghai Center for Brain Science and Brain-Inspired Intelligence Technology, Shanghai 201602, China.
Curr Biol. 2024 Feb 26;34(4):808-824.e6. doi: 10.1016/j.cub.2024.01.015. Epub 2024 Jan 30.
Many motor control systems generate multiple movements using a common set of muscles. How are premotor circuits able to flexibly generate diverse movement patterns? Here, we characterize the neuronal circuits that drive the distinct courtship songs of Drosophila melanogaster. Male flies vibrate their wings toward females to produce two different song modes-pulse and sine song-which signal species identity and male quality. Using cell-type-specific genetic reagents and the connectome, we provide a cellular and synaptic map of the circuits in the male ventral nerve cord that generate these songs and examine how activating or inhibiting each cell type within these circuits affects the song. Our data reveal that the song circuit is organized into two nested feedforward pathways with extensive reciprocal and feedback connections. The larger network produces pulse song, the more complex and ancestral song form. A subset of this network produces sine song, the simpler and more recent form. Such nested organization may be a common feature of motor control circuits in which evolution has layered increasing flexibility onto a basic movement pattern.
许多运动控制系统使用一组共同的肌肉来产生多种运动。前运动电路如何能够灵活地产生多样化的运动模式?在这里,我们描述了驱动黑腹果蝇不同求偶歌曲的神经元回路。雄蝇向雌蝇扇动翅膀,产生两种不同的歌曲模式——脉冲和正弦歌曲——以传递物种身份和雄性质量的信息。我们使用细胞类型特异性遗传试剂和连接组学,提供了雄性腹神经索中产生这些歌曲的回路的细胞和突触图谱,并研究了激活或抑制这些回路中的每个细胞类型如何影响歌曲。我们的数据显示,歌曲回路组织成两个嵌套的前馈通路,具有广泛的相互和反馈连接。较大的网络产生脉冲歌曲,这是更复杂和更古老的歌曲形式。该网络的一个子集产生正弦歌曲,这是一种更简单和更新的形式。这种嵌套的组织可能是运动控制回路的一个共同特征,在这种回路中,进化已经在基本运动模式上增加了越来越多的灵活性。