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首页> 外文期刊>Genes, Chromosomes and Cancer >A classification efficiency test of spectral karyotyping and multiplex fluorescence in situ hybridization: identification of chromosome homologies between Homo sapiens and Hylobates leucogenys.
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A classification efficiency test of spectral karyotyping and multiplex fluorescence in situ hybridization: identification of chromosome homologies between Homo sapiens and Hylobates leucogenys.

机译:光谱核型分析和多重荧光原位杂交的分类效率测试:智人与Hylobates白细胞遗传学之间的染色体同源性鉴定。

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摘要

Two digital fluorescence microscopy systems, spectral karyotyping (SKY) and multiplex fluorescence in situ hybridisation (M-FISH), are used with multicolour probe sets to assist in the detection of chromosome aberrations. We have compared the resolution of the two methods in their ability to identify karyotype rearrangements, which have occurred during the divergence of Homo sapiens and Hylobates leucogenys in evolution. A 24-color human paint kit distinguishes 74 conserved autosomal segments in H. leucogenys, some of which are difficult to resolve. We examined the extent to which the SKY and M-FISH techniques are able to detect the smallest of these bands. We have found this to be a rigorous test of multicolour chromosome classification systems. We conclude from our results that both systems are able invariably to classify the majority of conserved segments but differ in the efficiency of detection of small inserts. Copyright 2001 Wiley-Liss, Inc.
机译:两个数字荧光显微镜系统,光谱核型分析(SKY)和多重荧光原位杂交(M-FISH),与多色探针组配合使用,以帮助检测染色体畸变。我们已经比较了两种方法在鉴定染色体核型重排的能力方面的分辨率,这些能力在进化的智人和Hylobates白血统的发生过程中已经发生。一种24色的人类绘画工具包可区分白血球菌中74个保守的常染色体片段,其中一些很难解析。我们研究了SKY和M-FISH技术能够检测这些频段中最小的频段的程度。我们发现这是对多色染色体分类系统的严格测试。从我们的结果可以得出结论,这两个系统都能够不变地对大多数保守片段进行分类,但是检测小片段的效率不同。版权所有2001 Wiley-Liss,Inc.

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