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解构哺乳动物生殖:利用基因敲除技术定义生育途径。

Deconstructing mammalian reproduction: using knockouts to define fertility pathways.

作者信息

Roy Angshumoy, Matzuk Martin M

机构信息

Pathology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Reproduction. 2006 Feb;131(2):207-19. doi: 10.1530/rep.1.00530.

Abstract

Reproduction is the sine qua non for the propagation of species and continuation of life. It is a complex biological process that is regulated by multiple factors during the reproductive life of an organism. Over the past decade, the molecular mechanisms regulating reproduction in mammals have been rapidly unraveled by the study of a vast number of mouse gene knockouts with impaired fertility. The use of reverse genetics to generate null mutants in mice through targeted disruption of specific genes has enabled researchers to identify essential regulators of spermatogenesis and oogenesis in vivo and model human disorders affecting reproduction. This review focuses on the merits, utility, and the variations of the knockout technology in studies of reproduction in mammals.

摘要

繁殖是物种繁衍和生命延续的必要条件。它是一个复杂的生物学过程,在生物体的生殖生命周期中受到多种因素的调节。在过去十年中,通过对大量生育能力受损的小鼠基因敲除进行研究,调节哺乳动物繁殖的分子机制已被迅速揭示。利用反向遗传学通过靶向破坏特定基因在小鼠中产生无效突变体,使研究人员能够在体内鉴定精子发生和卵子发生的关键调节因子,并模拟影响生殖的人类疾病。本综述重点关注基因敲除技术在哺乳动物生殖研究中的优点、实用性及变体。

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