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斑马鱼-小鼠细胞杂交体对斑马鱼基因组图谱绘制的贡献。

Contribution of zebrafish-mouse cell hybrids to the mapping of the zebrafish genome.

作者信息

Chevrette M, Joly L, Tellis P, Ekker M

机构信息

Department of Surgery, McGill University, Montreal, QC, Canada.

出版信息

Biochem Cell Biol. 1997;75(5):641-9.

PMID:9551186
Abstract

The zebrafish, Danio rerio, is becoming an increasingly popular model for the study of vertebrate development. Indeed, the biology of the fish offers great advantages for such studies. The life cycle of the zebrafish is relatively short (2-3 months) and the embryos develop outside the mother, facilitating the visualization of any mutated phenotype. At present, more than 1000 embryonic mutations have been reported. However, until recently, there was no physical or genetic map for this organism. In an effort to generate such a map, we have produced and characterized a panel of zebrafish-mouse cell hybrids. We have used whole-cell fusion to transfer zebrafish chromosomes from two different zebrafish cell lines into mouse recipient cells, thus generating more than 100 hybrids. Using fluorescence in situ hybridization and polymerase chain reaction analysis, we have determined the zebrafish chromosome composition of these hybrids. Here we report that elements from the 25 linkage groups of the zebrafish genome are present in our hybrids. These hybrids could identify the chromosomal location of genes affected in zebrafish mutants.

摘要

斑马鱼(Danio rerio)正日益成为研究脊椎动物发育的热门模式生物。事实上,这种鱼类的生物学特性为这类研究提供了诸多优势。斑马鱼的生命周期相对较短(2 - 3个月),且胚胎在母体外发育,这便于观察任何突变表型。目前,已报道了1000多种胚胎突变。然而,直到最近,这种生物还没有物理图谱或遗传图谱。为了绘制这样的图谱,我们构建并鉴定了一组斑马鱼 - 小鼠细胞杂种。我们利用全细胞融合技术,将来自两种不同斑马鱼细胞系的斑马鱼染色体转移到小鼠受体细胞中,从而产生了100多个杂种细胞。通过荧光原位杂交和聚合酶链反应分析,我们确定了这些杂种细胞的斑马鱼染色体组成。在此我们报告,斑马鱼基因组25个连锁群的元件存在于我们构建的杂种细胞中。这些杂种细胞能够确定斑马鱼突变体中受影响基因的染色体位置。

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