Laboratory of Neural Control, Section on Developmental Neurobiology, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Neurosci. 2010 Aug 18;30(33):11151-6. doi: 10.1523/JNEUROSCI.2244-10.2010.
Multifunctional motoneurons and muscles, which are active during forward and backward locomotion are ubiquitous in animal models. However, studies in the nematode Caenorhabditis elegans suggest that some locomotor motoneurons are necessary only for forward locomotion (dorsal B-motoneurons, DB), while others (dorsal A-motoneurons, DA) are necessary only for backward locomotion. We tested this hypothesis directly by recording the activity of these motoneurons during semirestrained locomotion. For this purpose, we used epifluorescence imaging of the genetically encoded calcium sensor cameleon, expressed in specific motoneurons, while monitoring locomotor behavior through the microscope condenser using a second camera. We found that ventral and dorsal B-motoneurons (DB and VB) were coactive during forward locomotion while ventral A-motoneurons (VA) were only active during backward locomotion. The signals we recorded correlated with the direction of locomotion but not with the faster undulatory cycles. To our knowledge, these are the first recordings of motoneuron activity in C. elegans and the only direction-dedicated motoneurons described to date.
多用途运动神经元和肌肉在前进和后退运动中活跃,在动物模型中普遍存在。然而,秀丽隐杆线虫的研究表明,一些运动神经元仅对前进运动是必要的(背侧 B 运动神经元,DB),而另一些(背侧 A 运动神经元,DA)仅对后退运动是必要的。我们通过在半约束运动过程中记录这些运动神经元的活动来直接检验这一假设。为此,我们使用在特定运动神经元中表达的遗传编码钙传感器 Cameleon 的荧光显微镜成像,同时通过显微镜聚光器使用第二台相机监测运动行为。我们发现,腹侧和背侧 B 运动神经元(DB 和 VB)在前进运动中同时活跃,而腹侧 A 运动神经元(VA)仅在后退运动中活跃。我们记录的信号与运动方向相关,但与更快的波动周期无关。据我们所知,这些是秀丽隐杆线虫中运动神经元活动的首次记录,也是迄今为止描述的唯一具有定向特异性的运动神经元。