Weeks J C, Davidson S K
Institute of Neuroscience, University of Oregon, Eugene 97403.
J Neurobiol. 1994 May;25(5):535-54. doi: 10.1002/neu.480250507.
In Manduca sexta, the larval abdominal prolegs and their muscles degenerate at pupation. The proleg motor neurons undergo a period of dendritic regression, after which a specific subset of them dies. The surviving motor neurons undergo dendritic outgrowth during pupal-adult development, and most die after adult emergence. All of these events are regulated hormonally by ecdysteroids and juvenile hormone, but interactions of the motor neurons with other cells may potentially contribute as well. To investigate the possible influence of interganglionic neural interactions, we chronically isolated individual abdominal ganglia by severing the adjacent rostral and caudal connectives in the larval stage. Subsequent metamorphic changes in proleg motor neurons were examined in the isolated ganglia and ganglia adjacent to the isolated ganglia. Two abnormalities were observed: (1) some imprecision in the timing of motor neuron death, both at pupation and after adult emergence, and (2) the growth of ectopic neurites outside the neuropil boundaries during pupal-adult development (in ganglia with or without neuromas caused by connective transections). Other aspects of proleg motor neuron metamorphosis, including the segment-specific death of motor neurons at pupation, were the same as that in intact and sham-operated insects. Thus, interganglionic interactions appear to play a relatively minor role in the steroid-mediated metamorphic transformation of proleg motor neurons.
在烟草天蛾中,幼虫腹部的腹足及其肌肉在化蛹时会退化。腹足运动神经元会经历一段树突回缩期,之后其中特定的一部分会死亡。存活下来的运动神经元在蛹期到成虫发育过程中会经历树突生长,并且大多数在成虫羽化后死亡。所有这些事件都受到蜕皮类固醇和保幼激素的激素调节,但运动神经元与其他细胞的相互作用也可能发挥作用。为了研究神经节间神经相互作用的可能影响,我们在幼虫阶段通过切断相邻的头侧和尾侧神经索,长期分离单个腹部神经节。随后在分离的神经节以及与分离神经节相邻的神经节中检查腹足运动神经元的后续变态变化。观察到两个异常现象:(1)在化蛹时和成虫羽化后,运动神经元死亡时间存在一些不精确性;(2)在蛹期到成虫发育过程中(在有或没有因神经索横切导致神经瘤的神经节中),神经纤维网边界外出现异位神经突生长。腹足运动神经元变态的其他方面,包括化蛹时运动神经元的节段特异性死亡,与完整和假手术昆虫中的情况相同。因此,神经节间相互作用似乎在类固醇介导的腹足运动神经元变态转化中起相对较小的作用。