雌雄螳螂幼虫与成虫已鉴定的腿部运动神经元结构与功能比较。

U Rose, R B Levine
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引用次数: 7

摘要

研究了雌雄蛾(Manduca sexta)幼虫和成虫的持久腿部运动神经元,比较了它们的树突结构、内在电特性和目标神经支配模式。这项研究集中在前肢的两个已确定的运动神经元上。尽管腿部肌肉的完全重塑,运动神经元支配的跖前屈肌在幼虫和成虫的腿。同样,尽管中央树突退化和再生,但除了一个突出的中线分支外,分枝模式相似,这在成虫阶段不存在。运动神经元的内在电特性在幼虫期和成虫期有所不同。与成虫和非成虫相比,幼虫运动神经元具有更高的膜输入电阻和更多的去极化静息膜电位。在所有阶段,一个运动神经元的最大放电频率较低,而支配另一半肌肉的第二个运动神经元的最大放电频率较高。虽然这两个运动神经元继续支配目标肌肉的同半部分,但在变形过程中,它们对肌肉收缩的相对影响随着内在特性的变化而逆转。成体腭前屈肌运动神经元(刚出生前)表现出与出生前相似的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of identified leg motoneuron structure and function between larval and adult Manduca sexta.

Persistent leg motoneurons of the moth Manduca sexta were investigated in larval and adult animals to compare their dendritic structures, intrinsic electrical properties and pattern of target innervation. The study focused on two identified motoneurons of the prothoracic leg. Despite the complete remodeling of leg muscles, the motoneurons innervated pretarsal flexor muscles in both larval and adult legs. Similarly, although the central dendrites regress and regrow, the branching pattern was similar with the exception of a prominent midline branch that was not present in the adult stage. The intrinsic electrical properties of the motoneurons differed between larval and adult stages. Larval motoneurons had significantly higher membrane input resistances and more depolarized resting membrane potentials than did motoneurons in pharate adults or adults. In all stages, one motoneuron had a low maximal firing frequency, whereas the second motoneuron, which innervated the other half of the muscle, had a high maximum firing frequency. Although the two motoneurons continued to innervate the same halves of the target muscle, their relative effects on muscular contraction were reversed during metamorphosis along with concomitant changes in intrinsic properties. Pretarsal flexor motoneurons in pharate adults (just prior to emergence) displayed properties similar to those in emerged adults.

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