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在体外受精的排卵后老龄小鼠卵母细胞中,第二次减数分裂不分离现象并未增加。

Second meiotic nondisjunction is not increased in postovulatory aged murine oocytes fertilized in vitro.

作者信息

Zackowski J L, Martin-Deleon P A

机构信息

School of Life and Health Sciences, University of Delaware, Newark 19716.

出版信息

In Vitro Cell Dev Biol. 1988 Feb;24(2):133-7. doi: 10.1007/BF02623890.

Abstract

We used an in vitro fertilization system to examine the effects of postovulatory oocyte age on nondisjunction at the second meiotic division. After ovulatory-inducing injections of hormone, we recovered mouse oocytes either at the estimated time of ovulation (controls) or 2, 4, 5, 10, or 14 h later. Oocytes were subjected to an in vitro fertilization procedure, and chromosomal preparations were made from first cleavage metaphase eggs. The first cleavage assay reveals morphologically distinguishable paternal and maternal chromosomes. Many of the aged oocytes were activated rather than fertilized by the in vitro procedure, but could still be analyzed for nondisjunction. We found a tendency toward retention of the second polar body after 10 and 14 h aging. A total of 488 maternal genomes, 290 of which were in the control group, were analyzable for nondisjunction. Seven hyperhaploid genomes (2.4%) were observed in the controls and 6 (3.0%) in the combined aged group. The difference between these two frequencies is not significant (Gadj = 0.164, P greater than 0.50). In the aged group, one hyperhaploid genome was in the 2-h population, three in the 5-h population, and two in the 10-h population. We were unable to find any significant increase in the frequency of nondisjunction after postovulatory oocyte aging.

摘要

我们使用体外受精系统来研究排卵后卵母细胞年龄对第二次减数分裂时染色体不分离的影响。在注射促排卵激素后,我们在预计排卵时间(对照组)或之后2、4、5、10或14小时收集小鼠卵母细胞。将卵母细胞进行体外受精程序,并从第一次卵裂中期的卵制备染色体标本。第一次卵裂分析可显示形态上可区分的父本和母本染色体。许多老化的卵母细胞在体外程序中被激活而非受精,但仍可分析其染色体不分离情况。我们发现老化10小时和14小时后有保留第二极体的趋势。总共488个母本基因组可用于分析染色体不分离情况,其中290个在对照组。对照组中观察到7个超单倍体基因组(2.4%),老化组合计观察到6个(3.0%)。这两个频率之间的差异不显著(Gadj = 0.164,P大于0.50)。在老化组中,1个超单倍体基因组在2小时组,3个在5小时组,2个在10小时组。我们未能发现排卵后卵母细胞老化后染色体不分离频率有任何显著增加。

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