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哺乳动物卵母细胞发育:能力的检查点。

Mammalian oocyte development: checkpoints for competence.

作者信息

Fair Trudee

机构信息

Veterinary Sciences Centre and Lyons Research Farm, School of Agriculture, Food Science and Veterinary Medicine, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

Reprod Fertil Dev. 2010;22(1):13-20. doi: 10.1071/RD09216.

Abstract

During the lifespan of the female, biochemical changes occur in the ovarian environment. These changes are brought about by numerous endogenous and exogenous factors, including husbandry practices, production demands and disease, and can have a profound effect on ovarian oocyte quality and subsequent embryo development. Despite many investigations, there is no consensus regarding the time or period of follicular oocyte development that is particularly sensitive to insult. Here, the key molecular and morphological events that occur during oocyte and follicle growth are reviewed, with a specific focus on identifying critical checkpoints in oocyte development. The secondary follicle stage appears to be a key phase in follicular oocyte development because major events such as activation of the oocyte transcriptome, sequestration of the zona pellucida, establishment of bidirectional communication between the granulosa cells and the oocyte and cortical granule synthesis occur during this period of development. Several months later, the periovulatory period is also characterised by the occurrence of critical events, including appropriate degradation or polyadenylation of mRNA transcripts, resumption of meiosis, spindle formation, chromosome alignment and segregation, and so should also be considered as a potential checkpoint of oocyte development.

摘要

在雌性动物的生命周期中,卵巢环境会发生生化变化。这些变化是由众多内源性和外源性因素引起的,包括饲养管理、生产需求和疾病等,并且会对卵巢卵母细胞质量及随后的胚胎发育产生深远影响。尽管进行了许多研究,但对于卵泡卵母细胞发育中对损伤特别敏感的时间或阶段,尚无定论。在此,本文综述了卵母细胞和卵泡生长过程中发生的关键分子和形态学事件,特别着重于确定卵母细胞发育中的关键检查点。次级卵泡阶段似乎是卵泡卵母细胞发育的关键时期,因为在此发育阶段会发生一些重大事件,如卵母细胞转录组的激活、透明带的隔离、颗粒细胞与卵母细胞之间双向通讯的建立以及皮质颗粒的合成。几个月后,排卵前期也以关键事件的发生为特征,包括mRNA转录本的适当降解或多聚腺苷酸化、减数分裂的恢复、纺锤体形成、染色体排列和分离等,因此也应被视为卵母细胞发育的一个潜在检查点。

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