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Genetic visualization with an improved GCaMP calcium indicator reveals spatiotemporal activation of the spinal motor neurons in zebrafish

机译:具有改进的GCaMP钙指示剂的遗传可视化揭示了斑马鱼脊椎运动神经元的时空激活

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摘要

Animal behaviors are generated by well-coordinated activation of neural circuits. In zebrafish, embryos start to show spontaneous muscle contractions at 17 to 19 h postfertilization. To visualize how motor circuits in the spinal cord are activated during this behavior, we developed GCaMP-HS (GCaMP-hyper sensitive), an improved version of the genetically encoded calcium indicator GCaMP, and created transgenic zebrafish carrying the GCaMP-HS gene downstream of the Gal4-recognition sequence, UAS (upstream activation sequence). Then we performed a gene-trap screen and identified the SAIGFF213A transgenic fish that expressed Gal4FF, a modified version of Gal4, in a subset of spinal neurons including the caudal primary (CaP) motor neurons. We conducted calcium imaging using the SAIGFF213A; UAS:GCaMP-HS double transgenic embryos during the spontaneous contractions. We demonstrated periodic and synchronized activation of a set of ipsilateral motor neurons located on the right and left trunk in accordance with actual muscle movements. The synchronized activation of contralateral motor neurons occurred alternately with a regular interval. Furthermore, a detailed analysis revealed rostral-to-caudal propagation of activation of the ipsilateral motor neuron, which is similar to but much slower than the rostrocaudal delay observed during swimming in later stages. Our study thus demonstrated coordinated activities of the motor neurons during the first behavior in a vertebrate. We propose the GCaMP technology combined with the Gal4FF-UAS system is a powerful tool to study functional neural circuits in zebrafish.
机译:动物行为是由神经回路的协调激活产生的。在斑马鱼中,胚胎在受精后的17到19 h开始显示出自发的肌肉收缩。为了可视化在这种行为过程中如何激活脊髓中的运动回路,我们开发了GCaMP-HS(GCaMP-超敏),这是遗传编码钙指示剂GCaMP的改进版,并创建了携带GCaMP-HS基因下游的转基因斑马鱼Gal4-识别序列UAS(上游激活序列)。然后,我们进行了基因捕获筛选,并鉴定了在包括尾原发性(CaP)运动神经元的脊髓神经元子集中表达Gal4FF(Gal4的改良版)的SAIGFF213A转基因鱼。我们使用SAIGFF213A进行了钙成像; UAS:GCaMP-HS在自然收缩过程中使转基因胚胎倍增。我们展示了根据实际肌肉运动,位于左右躯干的一组同侧运动神经元的周期性和同步激活。对侧运动神经元的同步激活以规则的间隔交替发生。此外,详细的分析显示了同侧运动神经元激活的从尾到尾的传播,这与后期游泳中观察到的向尾尾的延迟相似,但慢得多。因此,我们的研究证明了脊椎动物的首次行为期间运动神经元的协调活动。我们建议将GCaMP技术与Gal4FF-UAS系统相结合,是研究斑马鱼中功能神经回路的有力工具。

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