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绿色荧光蛋白作为一种可在转基因斑马鱼整个生命周期中进行评分的遗传标记。

GFP as a Genetic Marker Scorable Throughout the Life Cycle of Transgenic Zebra Fish.

作者信息

Gibbs PD, Schmale MC

机构信息

Marine Biology and Fisheries, University of Miami, Miami, Florida, U.S.A.

出版信息

Mar Biotechnol (NY). 2000 Mar;2(2):107-125. doi: 10.1007/s101269900014.

Abstract

A fish expression vector, FRM, was constructed by fusing the carp beta-actin promoter and first intron to the ocean pout antifreeze protein terminator and putative boundary element. Mutant forms of the green fluorescent protein (GFP) were engineered into this vector, and the resultant series of vectors, FRMwg, FRM3wg (green GFP), and FRM2bl (blue GFP), were used to make transgenic zebra fish. After microinjection of either supercoiled or linearized DNA into one-celled eggs, GFP-expressing cells could be monitored by fluorescence microscopy commencing with the midblastula transition and continuing through embryogenesis. From adult fish, which retained scorable GFP either as patches or as a uniform fluorescence, 11 green and 1 blue GFP-expressing lines of zebra fish have been established. Expression of GFP was nearly ubiquitous and similar among all of these lines. Embryonic expression could be scored at 15 to 30 hours postfertilization and was seen throughout the embryo with the exceptions of the yolk, red blood cells, and in some lines, portions of the head. Adult expression was in a majority of tissues (e.g., muscle, brain, intestine, and heart, but not red blood cells). The notable difference between lines was that fluorescent eggs were scorable in seven of the lines. Adult homozygotes from a different subset of eight lines could be selected by the relative intensity of the GFP marking when compared with that in sibling heterozygotes. All 12 lines contain apparent single locus, multicopy, tandem integrations (1.5-100 copies per cell) of the transgenic DNA. The fish expression vector FRM could be used to drive nearly ubiquitous and strong expression of gene products other than GFP. The GFP expression vectors, FRMwg, FRM2wg, FRM3wg, and FRM2bl, may be useful for optimization of transgenesis and as a comarker. GFP-expressing zebra fish lines could facilitate experimental analysis of chimerism and in vivo gene targeting.

摘要

构建了一种鱼类表达载体FRM,方法是将鲤鱼β-肌动蛋白启动子和第一个内含子与海洋杜父鱼抗冻蛋白终止子及假定的边界元件融合。将绿色荧光蛋白(GFP)的突变形式构建到该载体中,得到一系列载体,即FRMwg、FRM3wg(绿色GFP)和FRM2bl(蓝色GFP),用于制备转基因斑马鱼。将超螺旋或线性化DNA显微注射到单细胞卵中后,从囊胚中期过渡开始直至胚胎发育过程中,均可通过荧光显微镜监测表达GFP的细胞。从保留了可检测到的GFP的成年鱼中,已建立了11条绿色和1条蓝色GFP表达的斑马鱼品系,这些GFP要么呈斑块状,要么呈均匀荧光。GFP在所有这些品系中的表达几乎无处不在且相似。受精后15至30小时可检测到胚胎表达,除卵黄、红细胞外,在整个胚胎中均可观察到,在某些品系中,头部的部分区域也除外。成年鱼的表达存在于大多数组织中(如肌肉、脑、肠和心脏,但不存在于红细胞中)。品系之间的显著差异在于,有7个品系的荧光卵是可检测的。与同胞杂合子相比,通过GFP标记的相对强度,可以从8个不同品系的子集中选择成年纯合子。所有12个品系均含有转基因DNA明显的单一位点、多拷贝、串联整合(每个细胞1.5 - 100个拷贝)。鱼类表达载体FRM可用于驱动除GFP以外的基因产物几乎无处不在且强烈的表达。GFP表达载体FRMwg、FRM2wg、FRM3wg和FRM2bl可能有助于优化转基因技术,并作为共标记物。表达GFP的斑马鱼品系可能有助于嵌合体和体内基因靶向的实验分析。

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