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首页> 外文期刊>Journal of Neurophysiology >Electrophysiological and morphological characterization of identified motor neurons in the Drosophila third instar larva central nervous system.
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Electrophysiological and morphological characterization of identified motor neurons in the Drosophila third instar larva central nervous system.

机译:果蝇第三龄幼虫中枢神经系统中识别的运动神经元的电生理和形态学表征。

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We have used dye fills and electrophysiological recordings to identify and characterize a cluster of motor neurons in the third instar larval ventral ganglion. This cluster of neurons is similar in position to the well-studied embryonic RP neurons. Dye fills of larval dorsomedial neurons demonstrate that individual neurons within the cluster can be reproducibly identified by observing their muscle targets and bouton morphology. The terminal targets of these five neurons are body wall muscles 6/7, 1, 14, and 30 and the intersegmental nerve (ISN) terminal muscles (1, 2, 3, 4, 9, 10, 19, 20). All cells except the ISN neuron, which has a type Is ending, display type Ib boutons. Two of these neurons appear to be identical to the embryonic RP3 and aCC cells, which define the most proximal and distal innervations within a hemisegment. The targets of the other neurons in the larval dorsomedial cluster do not correspond to embryonic targets of the neurons in the RP cluster, suggesting rewiring of this circuit during early larval stages. Electrophysiological studies of the five neurons in current clamp revealed that type Is neurons have a longer delay in the appearance of the first spike compared with type Ib neurons. Genetic, biophysical, and pharmacological studies in current and voltage clamp show this delay is controlled by the kinetics and voltage sensitivity of inactivation of a current whose properties suggest that it may be the Shal I(A) current. The combination of genetic identification and whole cell recording allows us to directly explore the cellular substrates of neural and locomotor behavior in an intact system.
机译:我们已经使用染料填充和电生理记录来识别和表征第三龄幼虫腹侧神经节中的一组运动神经元。这种神经元簇的位置与经过充分研究的胚胎RP神经元的位置相似。幼虫背体神经元的染料填充表明,可以通过观察其肌肉目标和胸腺形态来可复制地识别簇中的单个神经元。这五个神经元的最终目标是体壁肌肉6 / 7、1、14和30,以及节间神经(ISN)最终肌肉(1、2、3、4、9、10、19、20)。除ISN神经元(类型为Ending)以外的所有单元格均显示Ib boutons。这些神经元中的两个似乎与胚胎RP3和aCC细胞相同,它们定义了半段内最近端和远端的神经支配。幼虫背体簇中其他神经元的靶标不对应于RP簇中神经元的胚胎靶标,这表明该电路在幼体早期阶段需要重新布线。对电流钳中五个神经元的电生理研究表明,与Ib型神经元相比,Is型神经元在第一个尖峰出现时有更长的延迟。电流和电压钳制的遗传,生物物理和药理研究表明,这种延迟受电流灭活的动力学和电压敏感性控制,电流的特性表明它可能是Shal I(A)电流。遗传识别和全细胞记录相结合,使我们可以直接探索完整系统中神经和运动行为的细胞底物。

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