精子发生和受精的机制及其如何受到干扰。

Spermatogenesis Pub Date : 2015-01-26 eCollection Date: 2014-05-01 DOI:10.4161/21565562.2014.979623
Liza O'Donnell
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引用次数: 202

摘要

单倍体圆形精子在精子发生过程中发生了显著的转变。当细胞核浓缩和伸长时,细胞核向细胞的一侧极化,而基于微管的manchette将细胞核雕刻成其物种特有的头部形状。精子鞭毛的中心部分,即轴素的组装在精子发生的早期就开始了,随后是正常鞭毛所需的次级结构的组装。成熟的细长精子细胞的最终重塑发生在精子受精过程中,精子沿着管腔边缘排列,脱落其残留的细胞质,最终释放到管腔中。精子发生和受精缺陷表现为精子数量少、精子形态异常和运动能力差,在生殖毒物的使用过程中以及雄性不育的转基因小鼠模型中都很常见。本章总结了精子发生和受精过程中主要的生理过程和最常见的缺陷,以帮助诊断可能被实验操作(如生殖毒物管理)干扰的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Mechanisms of spermiogenesis and spermiation and how they are disturbed.

Haploid round spermatids undergo a remarkable transformation during spermiogenesis. The nucleus polarizes to one side of the cell as the nucleus condenses and elongates, and the microtubule-based manchette sculpts the nucleus into its species-specific head shape. The assembly of the central component of the sperm flagellum, known as the axoneme, begins early in spermiogenesis, and is followed by the assembly of secondary structures needed for normal flagella. The final remodelling of the mature elongated spermatid occurs during spermiation, when the spermatids line up along the luminal edge, shed their residual cytoplasm and are ultimately released into the lumen. Defects in spermiogenesis and spermiation are manifested as low sperm number, abnormal sperm morphology and poor motility and are commonly observed during reproductive toxicant administration, as well as in genetically modified mouse models of male infertility. This chapter summarizes the major physiological processes and the most commonly observed defects in spermiogenesis and spermiation, to aid in the diagnosis of the potential mechanisms that could be perturbed by experimental manipulation such as reproductive toxicant administration.

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