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小鼠卵子与胚胎的实验性重建:哺乳动物发育分析

Experimental reconstruction of mouse eggs and embryos: an analysis of mammalian development.

作者信息

Surani M A, Barton S C, Norris M L

出版信息

Biol Reprod. 1987 Feb;36(1):1-16. doi: 10.1095/biolreprod36.1.1.

Abstract

The scope of experimental approaches applicable to the study of mammalian eggs and embryos has advanced in recent years to provide unprecedented opportunities for understanding mammalian embryology. Amongst these significant advances has been the ability to alter the genetic constitution of eggs by pronuclear and nuclear transplantation as well as by the introduction of specific cloned genes into eggs and embryos. These techniques can be used in conjunction with the experimental reconstruction of preimplantation embryos to investigate more precisely a number of aspects of mammalian embryology. Recently, a most intriguing aspect of development has been uncovered, one that is apparently unique to mammals; experiments have revealed that the parental genomes are not functionally equivalent during embryogenesis. Hence, the parental origin of chromosomes determines their influence during embryogenesis. The mechanistic aspects responsible for the germ line modifications of homologous chromosomes, their role during development, and the wide-ranging implications of these findings for mammalian development have yet to be fully defined. An understanding of this process will provide the basis for developing genetic and reproductive strategies that can be applied to domestic animals and to humans.

摘要

近年来,适用于研究哺乳动物卵子和胚胎的实验方法范围不断拓展,为理解哺乳动物胚胎学提供了前所未有的机遇。其中的重大进展包括通过原核移植和核移植以及将特定的克隆基因导入卵子和胚胎来改变卵子的基因构成。这些技术可与植入前胚胎的实验性重建相结合,以便更精确地研究哺乳动物胚胎学的多个方面。最近,一个最引人入胜的发育方面被揭示出来,这显然是哺乳动物所独有的;实验表明,亲代基因组在胚胎发生过程中功能并不等同。因此,染色体的亲代来源决定了它们在胚胎发生过程中的影响。导致同源染色体种系修饰的机制方面、它们在发育过程中的作用以及这些发现对哺乳动物发育的广泛影响尚未完全明确。对这一过程的理解将为制定可应用于家畜和人类的遗传和生殖策略提供基础。

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