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通过荧光原位杂交构建针对整个人类核型的多色染色体条形码。

Toward a multicolor chromosome bar code for the entire human karyotype by fluorescence in situ hybridization.

作者信息

Müller S, Rocchi M, Ferguson-Smith M A, Wienberg J

机构信息

Department of Pathology, Cambridge University, UK.

出版信息

Hum Genet. 1997 Aug;100(2):271-8. doi: 10.1007/s004390050504.

Abstract

A colored banding pattern for human chromosomes is described that distinguishes each chromosome in a single fluorescence in situ hybridization with a set of subregional DNA probes. Alu/polymerase chain reaction products of various human/rodent somatic cell hybrids (fragment hybrids) were pooled into two probe sets that were labeled differentially and detected by red and green fluorescence. Chromosome regions hybridized by DNA present in both pools appeared yellow. The result was a multi-color set of 110 distinct signals per haploid chromosome set for the human karyotype. Each individual chromosome showed a unique sequence of signals, a result termed the "chromosome bar code". The reproducibility of the hybridization pattern in various labeling and hybridization experiments was analyzed by computer densitometry. We have applied the chromosome bar code both in diagnostic cytogenetics and in genome studies. The approach allows the rapid identification of chromosomes and chromosome rearrangements. Although not yet showing the resolution of classical banding patterns, the present experiments demonstrate various applications in which the present multi-color bar code can significantly add to the spectrum of cytogenetic techniques.

摘要

本文描述了一种人类染色体的彩色条带模式,该模式可通过一组亚区域DNA探针在单次荧光原位杂交中区分每条染色体。将各种人/啮齿动物体细胞杂种(片段杂种)的Alu/聚合酶链反应产物汇集到两个探针组中,对其进行差异标记,并通过红色和绿色荧光进行检测。两个探针组中均存在的DNA杂交的染色体区域呈现黄色。结果是人类核型的每个单倍体染色体组有110个不同信号的多色集合。每条单独的染色体都显示出独特的信号序列,这一结果被称为“染色体条形码”。通过计算机密度测定法分析了各种标记和杂交实验中杂交模式的可重复性。我们已将染色体条形码应用于诊断细胞遗传学和基因组研究。该方法能够快速识别染色体和染色体重排。尽管目前尚未达到经典条带模式的分辨率,但本实验证明了当前的多色条形码在多种应用中可显著丰富细胞遗传学技术的范围。

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