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正常和发育停滞的豹蛙幼虫神经肌肉接头的超微结构比较:变态缺失时成熟受限

An ultrastructural comparison of neuromuscular junctions in normal and developmentally arrested Rana pipiens larvae: limited maturation in the absence of metamorphosis.

作者信息

Lynch K, Homer M J, Harris C D, Morrissey J

出版信息

Am J Anat. 1986 May;176(1):83-95. doi: 10.1002/aja.1001760107.

Abstract

Neuromuscular junctions in the rectus abdominis muscles of normal and developmentally arrested Rana pipiens larvae were studied with freeze fracture and conventional electron microscopy to determine whether structural aspects of junctional maturation depend on metamorphosis. Comparison was made between junctions in premetamorphic larvae 1-3 months old and junctions in larvae that had remained in premetamorphosis for more than a year (more than four times as long as normal). In most respects, junctions from the two groups of larvae were similar. Unlike adult junctions, nerve-muscle contacts in both larval groups were pleomorphic and often involved more than one neuronal process; Schwann cell processes very rarely extended between nerve and muscle. Active zone structure ranged from total disorganization to an adult pattern of highly ordered double rows of particles aligned over junctional folds. Only quantitative analysis revealed differences between junctions in old and young larvae. The older larvae had fewer nerve-muscle contact sites involving multiple neuronal elements and a higher ratio of active zone length to presynaptic membrane area, although the mean active zone length was the same in the two groups. The results indicate that the maturation of junctional shape, the branching pattern of the axons, and the relationship of presynaptic axons to Schwann cells must be directly or indirectly dependent on the hormonal or behavioral changes associated with metamorphosis.

摘要

利用冷冻断裂技术和传统电子显微镜技术,对正常和发育停滞的豹蛙幼体腹直肌中的神经肌肉接头进行了研究,以确定接头成熟的结构方面是否依赖于变态发育。对1 - 3个月大的前变态幼体中的接头与已处于前变态状态一年以上(超过正常时间四倍多)的幼体中的接头进行了比较。在大多数方面,两组幼体的接头相似。与成年接头不同,两组幼体中的神经 - 肌肉接触都是多形性的,并且常常涉及不止一个神经元突起;施万细胞突起极少在神经和肌肉之间延伸。活性区结构从完全紊乱到成年模式的高度有序的双排颗粒排列在接头褶皱上不等。只有定量分析揭示了老幼体接头之间的差异。尽管两组的平均活性区长度相同,但老幼体中涉及多个神经元成分的神经 - 肌肉接触位点较少,且活性区长度与突触前膜面积的比值较高。结果表明,接头形状的成熟、轴突的分支模式以及突触前轴突与施万细胞的关系必须直接或间接地依赖于与变态发育相关的激素或行为变化。

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