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AcroM fluorescent in situ hybridization analyses of marker chromosomes.

机译:AcroM标记染色体的荧光原位杂交分析。

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The presence of a de novo supernumerary marker chromosome (SMC) poses problems in genetic counseling. The consequences of the additional chromosomal material may range from harmless to detrimental. As the composition of a SMC cannot be deciphered by traditional banding analysis, sophisticated methods are needed for their rapid and detailed analyses. A new strategy is presented, which allows the elucidation of the composition of SMCs in one or two hybridizations. One hybridization, termed AcroM-FISH, involves a newly generated probe mix, which consists of painting probes for all acrocentric chromosomes, centromere probes for chromosomes 13/21, 14/22, 15, and a probe specific for rDNA, each labeled with a specific combination of fluorochromes. This probe mix is sufficient to characterize approximately 80% of all SMCs. For the other 20% of SMCs, chromosomes can be analyzed in a second hybridization by multicolor karyotyping, for example, multiplex FISH (M-FISH), to check for the presence of euchromatin of other chromosomes. The potential of AcroM-FISH was tested in various applications.
机译:从头数字标记染色体(SMC)的存在在遗传咨询中引起了问题。额外的染色体物质的后果可能从无害到有害。由于传统的条带分析无法解读SMC的成分,因此需要复杂的方法来进行快速而详细的分析。提出了一种新的策略,该策略可以阐明一次或两次杂交中SMC的组成。一种称为AcroM-FISH的杂交涉及一种新生成的探针混合物,该混合物由所有acrocentric染色体的绘画探针,13 / 21、14 / 22、15号染色体的着丝粒探针和rDNA特异性探针组成,每个探针都标记有荧光染料的特定组合。这种探针混合物足以表征所有SMC的大约80%。对于其他20%的SMC,可以在第二次杂交中通过多色核型分析(例如,多重FISH(M-FISH))分析染色体,以检查是否存在其他染色体的常染色质。 AcroM-FISH的潜力已在各种应用中进行了测试。

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