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Morphological changes of wrasse sperm axoneme after their motility initiation observed with use of atomic force microscopy

机译:原子力显微镜观察到的濑鱼雄性轴突活力开始后的形态学变化

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Abstract: The sperm of bambooleaf wrasse, a marine teleost, are immotile when they are diluted in a solution isotonic to the seminal plasma, but they begin to swim when they are suspended in sea water. What changes arise in morphology of the sperm cell after the motility initiation? The semen collected from the abdomen of a matured wrasse was mixed with either thinned sea water or sea water. A drop of the same specimen was placed on a cleaned silicon wafer, respectively. After fixed chemically, they were rinsed with distilled water and dried naturally in room temperature. These samples were examined carefully with use of an atomic force microscopy. Although the axonemes of intact sperms were found to be crushed as if the axonemes were cut open along doublet microtubules. The motility initiated sperm was strong enough to resist the force caused by surface tension of water in the drying process and could maintain the structure of the axoneme. These experimental facts suggest that the binding characteristics in the structure of the axoneme after the initiation of the motility were clearly changed stronger that before.!8
机译:摘要:海洋硬骨鱼竹叶濑鱼的精子在精浆等渗的溶液中稀释后不活动,而悬浮在海水中则开始游动。运动开始后,精子细胞的形态发生了什么变化?从成熟的濑鱼的腹部收集的精液与稀释的海水或海水混合。将一滴相同的样品分别放在清洗过的硅晶片上。化学固定后,将它们用蒸馏水冲洗,并在室温下自然干燥。使用原子力显微镜仔细检查了这些样品。尽管发现完整精子的轴突被压碎,好像轴突沿双峰微管切开一样。活力引发的精子足以抵抗干燥过程中水的表面张力所引起的作用力,并能维持轴突的结构。这些实验事实表明,运动开始后,轴索蛋白结构的结合特性明显改变了。8

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