昆虫纤维飞行肌的结构:以纤维膜系统为重点的研究。

D S Smith
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引用次数: 156

摘要

描述了黄粉甲虫成熟成虫的纤维状飞行肌的精细结构。虽然纤维肌的高频率收缩在一定程度上被认为是翼部机械专门化的结果,而不是相应的高运动脉冲供应率的结果,但是将兴奋传导到这些大纤维的途径的性质问题仍然存在。因此,特别注意的是质膜和肌浆网在这一组织中的分布和关系。侵入的气管从纤维的表面到纤维的所有深度都吸引了一层质膜鞘,这表明这些鞘和由此产生的广泛的管状分枝一起,使质膜到纤维的最大距离从纤维的半径减小到小于2微。这里提出的证据证实了Veratti的论点,即在纤维肌中,“网状”与原纤维有关,尽管与原纤维完全不同。与目前所研究的其他肌肉不同,这些飞行肌纤维只包含一个质膜网,但在其他地方,一般的“肌浆网”可能包括来自质膜的成分,同样作为向内传导兴奋的途径。黄粉虫内化质膜的剖面显示通常的三层25-25-25 A组织,在切片中经常看到与孤立的囊泡(由“简单”50 A膜定义)密切相关,在这里被认为是退化形式的肌浆网部分,而在其他类型的肌肉中是复杂和高度发达的。在《黄粉虫》中,这两种不同成分之间的这种联系被称为“二联体”,并考虑了它们与其他类型纤维的“三联体”之间可能的形态和功能同源性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE STRUCTURE OF INSECT FIBRILLAR FLIGHT MUSCLE : A Study Made with Special Reference to the Membrane Systems of the Fiber.

The fine structure of fibrillar flight muscle of the mature adult beetle Tenebrio molitor is described. Although the very high frequency of contraction of fibrillar muscle has previously been in part accounted for as the result of mechanical specialization of the wing-bearing segment rather than of a correspondingly high rate of motor impulse supply, the problem of the nature of the pathway by which excitation is conducted into these large fibers remained. Therefore, particular attention has been given to the disposition and relationships of the plasma membrane and sarcoplasmic reticulum in this tissue. The invading tracheoles draw with them a sheath of plasma membrane from the surface to all depths in the fiber, and it is suggested that these sheaths, together with the extensive tubular arborisations arising from them, reduce the maximum plasma membrane-to-fibril distance from the radius of the fiber to a value of less than 2 micro. The evidence presented here confirms Veratti's contention that in fibrillar muscle the "reticulum" is associated with, though entirely distinct from the fibrils. Unlike other muscles so far examined, these flight muscle fibers contain a plasma membrane reticulum only, but it is possible that elsewhere the general "sarcoplasmic reticulum" includes a component derived from the plasma membrane, likewise acting as the pathway for inward conduction of excitation. Profiles of the internalised plasma membrane in Tenebrio showing the usual triple-layered 25-25-25 A organization are frequently seen, in sections, in close association with isolated vesicles (defined by "simple" 50 A membranes) which are here considered to represent, in vestigial form, the portion of the sarcoplasmic reticulum which in other types of muscle is complex and highly developed. Such associations, in Tenebrio, between these two dissimilar elements are here termed "dyads" and the possible morphological and functional homology between these and the "triads" of other types of fiber is considered.

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