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非洲爪蟾精子:形态与活力之间的相关性。

Xenopus spermatozoon: correlation between shape and motility.

作者信息

Bernardini G, Andrietti F, Camantini M, Cosson M P

机构信息

Dipartimento di Biología, Università di Milano, Italy.

出版信息

Gamete Res. 1988 Jun;20(2):165-75. doi: 10.1002/mrd.1120200207.

Abstract

Xenopus spermatozoa have a characteristic corkscrew-shaped head and a flagellum with a conventional "9 + 2" structure (Bernardini et al.: J Ultrastruct Md Struct Res: 94:188-194. They are motile in water and media of low osmolarities, but not in media of osmolarities higher than 200 mosm/liter, regardless of the ionic composition. External calcium and pH are not involved in the inhibition of sperm movement at high osmolarities. The duration of sperm motion was less than 10 min, and both flagellar beat frequencies and sperm velocities declined progressively. However, in demembranated and reactivated tails, flagellar beating was sustained for longer times. Flagella propagated three-dimensional waves that induced a spinning motion of the whole spermatozoon. This pattern of movement is not dependent on the shape of the sperm head, since isolated, reactivated flagella exhibited three-dimensional waves.

摘要

非洲爪蟾精子有一个独特的螺旋形头部和一条具有传统“9 + 2”结构的鞭毛(贝尔纳迪尼等人:《超微结构与分子结构研究杂志》:94:188 - 194)。它们在水和低渗透压介质中可游动,但在渗透压高于200毫渗摩尔/升的介质中则不能游动,无论离子组成如何。外部钙和pH值与高渗透压下精子运动的抑制无关。精子运动持续时间少于10分钟,鞭毛摆动频率和精子速度都逐渐下降。然而,在去膜并重新激活的尾部,鞭毛摆动能持续更长时间。鞭毛传播三维波,引发整个精子的旋转运动。这种运动模式不依赖于精子头部的形状,因为分离并重新激活的鞭毛也能表现出三维波。

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