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俄罗斯鲟精子的运动起始:描述首个鞭毛波的传播

Motility initiation of sterlet sturgeon (Acipenser ruthenus) spermatozoa: Describing the propagation of the first flagellar waves.

作者信息

Prokopchuk Galina, Dzyuba Boris, Bondarenko Olga, Rodina Marek, Cosson Jacky

机构信息

South Bohemian Research Center of Aquaculture and Biodiversity of Hydrocenoses, Research Institute of Fish Culture and Hydrobiology, Faculty of Fisheries and Protection of Waters, University of South Bohemia in České Budějovice, Vodňany, Czech Republic.

South Bohemian Research Center of Aquaculture and Biodiversity of Hydrocenoses, Research Institute of Fish Culture and Hydrobiology, Faculty of Fisheries and Protection of Waters, University of South Bohemia in České Budějovice, Vodňany, Czech Republic.

出版信息

Theriogenology. 2015 Jul 1;84(1):51-61. doi: 10.1016/j.theriogenology.2015.02.011. Epub 2015 Feb 13.

Abstract

In the present study, for the first time in fish spermatozoa, we describe the precise chronology of motility initiation of sterlet (sturgeon) sperm from completely immotile flagella to regular full wave propagation. The successive activation steps were investigated by high-speed video microscopy, using specific experimental situation, where sperm motility initiation was delayed in time up to several seconds (10 ± 2.68 seconds). Starting from fully immotile, the flagellum shows some trembling for a brief period, soon followed by appearance of the first real bend (so-called "principal bend") with a large wave amplitude 4.28 ± 0.65 μm, then by the "reverse bend," the latter presenting a lower (P < 0.05) wave amplitude (1.14 ± 0.32 μm). This couple of first bends formed at the basal region begins to propagate toward the flagellar tip but gradually fades when reaching the midflagellum, wherein consequently the sperm cell remains nonprogressive. This behavior repeats several times until a stage where the amplitude of the reverse bend gradually reaches a value similar that of the principal bend: The larger amplitude of this couple of bends finally leads to sustain a real "takeoff" of the sperm cell characterized by a full flagellar wave propagation generating an active forward displacement similar to that occurring during regular steady state motility (several seconds after activation). Starting from the earliest stages of motility initiation, the wave propagation along the flagellum and formation of new waves proceeded in a helical manner leading to a 3-dimensional rotation of the whole spermatozoon. Eventually, we estimated that the time period needed from the activation signal (contact with fresh water) to full wave propagation ranges from 0.4 to 1.2 seconds.

摘要

在本研究中,我们首次描述了鲟鱼精子从完全静止的鞭毛到规则的全波传播的精确运动起始时间顺序。通过高速视频显微镜,利用特定的实验情况,研究了连续的激活步骤,在该实验中精子运动起始被延迟了数秒(10±2.68秒)。从完全静止开始,鞭毛会在短时间内出现一些颤动,随后很快出现第一个真正的弯曲(所谓的“主弯曲”),其波幅较大,为4.28±0.65μm,接着是“反向弯曲”,后者的波幅较低(P<0.05)(1.14±0.32μm)。在基部区域形成的这一对初始弯曲开始向鞭毛尖端传播,但在到达鞭毛中部时逐渐消失,因此精子细胞在此阶段仍无前进运动。这种行为重复几次,直到反向弯曲的幅度逐渐达到与主弯曲相似的值:这一对弯曲的较大幅度最终导致精子细胞真正“起飞”,其特征是鞭毛全波传播,产生类似于正常稳态运动(激活后几秒)时的主动向前位移。从运动起始的最早阶段开始,沿鞭毛的波传播和新波的形成以螺旋方式进行,导致整个精子的三维旋转。最终,我们估计从激活信号(与淡水接触)到全波传播所需的时间段为0.4至1.2秒。

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