首页> 美国卫生研究院文献>Aging (Albany NY) >The horse as a natural model to study reproductive aging-induced aneuploidy and weakened centromeric cohesion in oocytes
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The horse as a natural model to study reproductive aging-induced aneuploidy and weakened centromeric cohesion in oocytes

机译:这匹马作为一种自然模型用于研究卵母细胞的生殖衰老诱导的非整倍性和弱化的焦化内粘合

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摘要

Aneuploidy of meiotic origin is a major contributor to age-related subfertility and an increased risk of miscarriage in women. Although age-related aneuploidy has been studied in rodents, the mare may be a more appropriate animal model to study reproductive aging. Similar to women, aged mares show reduced fertility and an increased incidence of early pregnancy loss; however, it is not known whether aging predisposes to aneuploidy in equine oocytes. We evaluated the effect of advanced mare age on (1) gene expression for cohesin components, (2) incidence of aneuploidy and (3) chromosome centromere cohesion (measured as the distance between sister kinetochores) in oocytes matured in vitro. Oocytes from aged mares showed reduced gene expression for the centromere cohesion stabilizing protein, Shugoshin 1. Moreover, in vitro matured oocytes from aged mares showed a higher incidence of aneuploidy and premature sister chromatid separation, and weakened centromeric cohesion. We therefore propose the mare as a valid model for studying effects of aging on centromeric cohesion; cohesion loss predisposes to disintegration of bivalents and premature separation of sister chromatids during the first meiotic division, leading to embryonic aneuploidy; this probably contributes to the reduced fertility and increased incidence of pregnancy loss observed in aged mares.
机译:减数分裂原产地是与年龄相关的患者的主要贡献者和妇女流产风险增加。虽然在啮齿动物中已经研究了年龄相关的非洲倍性,但母马可能是一种更合适的动物模型来研究生殖衰老。与女性相似,迈尔斯表现出降低生育率和早期妊娠发病率增加;然而,尚不知道老化是否易于在卵卵卵细胞中易于缺陷。我们评估了先进的MARE AGE对(1)基因表达的休蛋白组分的影响,(2)非倍差和(3)染色体CEMROMERE CONESION(以体外成熟的卵母细胞患者患者患者Kinetochores之间的距离)的发生率。来自老母马的卵母细胞表达了对甲磺的凝聚蛋白的基因表达,Shugoshin 1.此外,来自老母马氏的体外成熟的卵母细胞显示出一种较高的交织倍性和早熟的筛选染色体分离,并弱化焦化内核。因此,我们将母马提出作为研究衰老对焦化内粘性效果的有效模型;凝聚力损失易于崩解二价杀菌剂和染色体的早熟分离在第一个减数分裂段,导致胚胎非妇价;这可能有助于降低的生育率和孕妇孕期损失的发病率降低。

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