Duvert M, Savineau J P
Laboratoire de Cytologie, Université de Bordeaux II, U.A. 339 CNRS, Avenue des Facultés, Talence Cedex, France.
Tissue Cell. 1986;18(6):937-52. doi: 10.1016/0040-8166(86)90048-0.
The relationships between structure and function of the contractile apparatus of the trunk musculature in the chaetognath Sagitta setosa, were studied by electron microscopy and mechanical recordings. We also investigated the nature of the neuromediator at the synaptic level. Contraction, relaxation and stretch can be explained on the sliding model basis. The primary filaments are linked to a large Z line, via C filaments. These C filaments vary in length according to the mechanical states of the contractile apparatus. These muscles are directly excitable by electrical current, high K(+) solutions induced depolarization, or exogenous acetylcholine. The characteristics of the unitary contractile response (twitch) and the effects of the frequency of stimulation set up the contractions of Sagitta among the fastest in the animal kingdom. Acetylcholine appears to be the best candidate for the mediator released at the neuromuscular junction. Its effect on the post-junctional membrane seems to require a receptor of the nicotinic type.
通过电子显微镜和机械记录,研究了箭虫(Sagitta setosa)躯干肌肉收缩装置的结构与功能之间的关系。我们还在突触水平研究了神经递质的性质。收缩、舒张和拉伸可以基于滑动模型来解释。初级细丝通过C细丝与一条大的Z线相连。这些C细丝的长度根据收缩装置的机械状态而变化。这些肌肉可被电流、高钾溶液诱导的去极化或外源性乙酰胆碱直接兴奋。单收缩反应(抽搐)的特征以及刺激频率的影响使箭虫的收缩速度在动物界中名列前茅。乙酰胆碱似乎是神经肌肉接头处释放的递质的最佳候选者。它对突触后膜的作用似乎需要烟碱型受体。