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首页> 外文期刊>The Journal of Experimental Biology >THE DISTAL SPERM FLAGELLUM - ITS POTENTIAL FOR MOTILITY AFTER SEPARATION FROM THE BASAL STRUCTURES
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THE DISTAL SPERM FLAGELLUM - ITS POTENTIAL FOR MOTILITY AFTER SEPARATION FROM THE BASAL STRUCTURES

机译:分离的精子FL胚-从基底结构分离后的迁移潜力。

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The distal region of the sperm flagellum of Gallus domesticus has been separated and purified, It consists of a 9+2 axoneme, without basal or accessory structures, Such distal segments have been demembranated and then reactivated, either by adding ATP or by releasing ATP photolytically from caged ATP: we find that they are capable of a period of independent motility, Bends form repetitively and travel towards the tip, though it is an abnormal, irregular pattern of beating, It is argued that this motility is not dependent on damage to the flagellum at the fracture site, Evidence is presented that the potential for such motility depends upon the existence of bends on the axoneme before the reactivation, The reactivated motility is short-lived: 50 % of the distal flagellar segments, placed in the reactivating solution, become quiescent and straight within 60 s, However, vigorous beating can be induced in such quiescent segments of axoneme by compressing one end with a glass microneedle, We record, provisionally, that the site of compression does not determine the direction in which bends move along the flagellar segment, The effect of compression in re-initiating motility suggests that a mechanical resistance is necessary, somewhere along the axoneme, for normal, sustained motility; it is proposed that the specialized basal structures, collectively, provide such a resistance in the intact flagellum. [References: 37]
机译:已分离和纯化了家蝇精子鞭毛的远端区域,它由9 + 2轴突素组成,没有基础或附属结构。通过添加ATP或通过光解释放ATP,将这些远端部分去膜,然后重新激活笼养ATP:我们发现它们具有一定的独立运动能力,弯曲反复形成并向尖端移动,尽管这是一种异常,不规则的跳动模式,但据认为,这种运动并不依赖于对运动的伤害。断裂部位的鞭毛,有证据表明这种运动的可能性取决于重新激活前轴突上是否存在弯曲,重新激活的运动是短暂的:将50%的远端鞭毛节段置于重新激活溶液中,在60 s内变得静止且笔直,但是,通过用玻璃微针W压缩一端,可以在这种轴突的静止节段中引起剧烈的跳动暂时记录压缩的位置并不能确定弯曲沿鞭毛节段的移动方向。压缩在重新启动运动中的作用表明,在轴突处的某个位置,正常,持续的机械阻力是必要的动力建议专门的基础结构共同在完整的鞭毛中提供这种抵抗力。 [参考:37]

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