AN Belozersky Institute of Physico-Chemical Biology, MV Lomonosov Moscow State University, Moscow, Russia.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2010 Apr;196(4):241-8. doi: 10.1007/s00359-010-0509-5. Epub 2010 Feb 16.
This study revises the mechanisms of ciliary locomotion and demonstrates muscular contribution to locomotion rate in Lymnaea stagnalis. L. stagnalis sticks to the substratum by the foot sole and moves smoothly with no visible contractions of the foot. A ciliated epithelium covering the sole is underlain by smooth muscle cells containing giant mitochondria. It is shown here that slow (basal) locomotor activity (measured as the flow rate of physiological saline over isolated sole) appears spontaneously or is induced by 10(-8)-10(-7) M 5-HT. 5-HT (10(-7)-10(-4) M) facilitates locomotor activity dose-dependently, and KCN (an inhibitor of mitochondrial respiration) decreases these effects to the basal level. 5-HT and KCN have no effect on the frequency of ciliary beat (stroboscopic measurements), and blockers of anaerobic glycolysis inhibit ciliary motility. Under anaerobic conditions locomotion of a snail is slow and insensitive to 5-HT in contrast to that in aerobic environments. It is concluded that glycolysis supplies energy to ciliated cells and respiration to sole muscle cells; 5-HT stimulates ciliary beating in an all-or-none fashion and muscular waves in a dose-dependent manner; cilia provide slow (basal) gliding, and locomotory rate up to 80% above the basal level is determined by muscular waves.
本研究修正了纤毛运动的机制,并证明了肌肉对田螺 Lymnaea stagnalis 运动速度的贡献。田螺通过足底附着在基质上,并平稳移动,足底没有可见的收缩。覆盖足底的纤毛上皮下有平滑肌细胞,其中含有巨大的线粒体。研究表明,缓慢(基础)运动活性(以分离足底流过的生理盐水流量来衡量)自发出现或被 10(-8)-10(-7) M 5-HT 诱导。5-HT(10(-7)-10(-4) M)呈剂量依赖性促进运动活性,而 KCN(线粒体呼吸抑制剂)将这些作用降低至基础水平。5-HT 和 KCN 对纤毛拍动的频率没有影响,而无氧糖酵解的抑制剂抑制纤毛运动。在无氧条件下,与有氧环境相比,蜗牛的运动速度较慢,对 5-HT 的敏感性降低。结论是,糖酵解为纤毛细胞提供能量,呼吸为足底肌肉细胞提供能量;5-HT 以全有或全无的方式刺激纤毛拍打,并以剂量依赖的方式刺激肌肉波;纤毛提供缓慢(基础)滑行,运动速度比基础水平提高 80%以上由肌肉波决定。