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鱼类胚胎干细胞及其在生物技术中的应用。

Fish ES cells and applications to biotechnology.

作者信息

Alvarez M Carmen, Béjar Julia, Chen Songlin, Hong Yunhan

机构信息

Department of Cell Biology and Genetics, Faculty of Sciences, University of Málaga, 29071, Málaga, Spain.

出版信息

Mar Biotechnol (NY). 2007 Mar-Apr;9(2):117-27. doi: 10.1007/s10126-006-6034-4. Epub 2006 Nov 6.

Abstract

ES cells provide a promising tool for the generation of transgenic animals with site-directed mutations. When ES cells colonize germ cells in chimeras, transgenic animals with modified phenotypes are generated and used either for functional genomics studies or for improving productivity in commercial settings. Although the ES cell approach has been limited to mice, there is strong interest for developing the technology in fish. We describe the step-by-step procedure for developing ES cells in fish. Key aspects include avoiding cell differentiation, specific in vitro traits of pluripotency, and, most importantly, testing for production of chimeric animals as the main evidence of pluripotency. The entire process focuses on two model species, zebrafish and medaka, in which most work has been done. The achievements attained in these species, as well as their applicability to other commercial fish, are discussed. Because of the difficulties relating to germ line competence, mostly of long-term fish ES cells, alternative cell-based approaches such as primordial germ cells and nuclear transfer need to be considered. Although progress to date has been slow, there are promising achievements in homologous recombination and alternative avenues yet to be explored that can bring ES technology in fish to fruition.

摘要

胚胎干细胞为生成具有定点突变的转基因动物提供了一种很有前景的工具。当胚胎干细胞在嵌合体中定殖于生殖细胞时,就会产生具有改良表型的转基因动物,并将其用于功能基因组学研究或提高商业环境中的生产力。尽管胚胎干细胞方法一直局限于小鼠,但人们对在鱼类中开发该技术有着浓厚兴趣。我们描述了在鱼类中开发胚胎干细胞的一步步程序。关键方面包括避免细胞分化、多能性的特定体外特征,以及最重要的是,测试嵌合体动物的产生作为多能性的主要证据。整个过程聚焦于斑马鱼和青鳉这两个已开展了大部分工作的模式物种。讨论了在这些物种中取得的成就以及它们对其他商业鱼类的适用性。由于与生殖系能力相关的困难,主要是长期鱼类胚胎干细胞的困难,需要考虑诸如原始生殖细胞和核移植等基于细胞的替代方法。尽管迄今为止进展缓慢,但在同源重组方面有一些有前景的成就,还有尚未探索的替代途径,有望使鱼类的胚胎干细胞技术取得成果。

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