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Genetic Disruption of the Copulatory Plug in Mice Leads to Severely Reduced Fertility

机译:小鼠交配栓的遗传破坏导致生育力大大降低

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摘要

Seminal fluid proteins affect fertility at multiple stages in reproduction. In many species, a male's ejaculate coagulates to form a copulatory plug. Although taxonomically widespread, the molecular details of plug formation remain poorly understood, limiting our ability to manipulate the structure and understand its role in reproduction. Here I show that male mice knockouts for transglutaminase IV (Tgm4) fail to form a copulatory plug, demonstrating that this gene is necessary for plug formation and lending a powerful new genetic tool to begin characterizing plug function. Tgm4 knockout males show normal sperm count, sperm motility, and reproductive morphology. However, very little of their ejaculate migrates into the female's reproductive tract, suggesting the plug prevents ejaculate leakage. Poor ejaculate migration leads to a reduction in the proportion of oocytes fertilized. However, Tgm4 knockout males fertilized between 3–11 oocytes, which should be adequate for a normal litter. Nevertheless, females mated to Tgm4 knockout males for approximately 14 days were significantly less likely to give birth to a litter compared to females mated to wild-type males. Therefore, it appears that the plug also affects post-fertilization events such as implantation and/or gestation. This study shows that a gene influencing the viscosity of seminal fluid has a major influence on male fertility.
机译:精液蛋白在生殖的多个阶段影响生育力。在许多物种中,雄性射精凝结形成交配栓。尽管在分类学上很普遍,但对栓塞形成的分子细节仍知之甚少,这限制了我们操纵该结构并了解其在生殖中的作用的能力。在这里,我显示了转谷氨酰胺酶IV(Tgm4)的雄性基因敲除未能形成交配栓,表明该基因是栓形成所必需的,并提供了一个强大的新遗传工具来开始表征栓功能。 Tgm4基因敲除的男性表现出正常的精子数量,精子活力和生殖形态。但是,它们的射精很少迁移到雌性的生殖道中,这表明栓塞可防止射精渗漏。射精不良迁移导致受精卵母细胞比例减少。但是,Tgm4基因敲除的雄性在3-11个卵母细胞之间受精,这对于正常的产仔应该是足够的。然而,与野生型雄性交配的雌性相比,与Tgm4基因敲除雄性交配的雌性大约14天的分娩率要低得多。因此,似乎堵塞物也影响受精后的事件,例如植入和/或妊娠。这项研究表明,影响精液粘度的基因对男性生育能力有重大影响。

著录项

  • 期刊名称 PLoS Genetics
  • 作者

    Matthew D. Dean;

  • 作者单位
  • 年(卷),期 2013(9),1
  • 年度 2013
  • 页码 e1003185
  • 总页数 7
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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