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多重聚合酶链反应、扩增子大小及在纳米芯片电子微阵列上的杂交效率。

Multiplex PCR, amplicon size and hybridization efficiency on the NanoChip electronic microarray.

作者信息

Børsting Claus, Sanchez Juan J, Morling Niels

机构信息

Department of Forensic Genetics, Institute of Forensic Medicine, University of Copenhagen, 11 Frederik V's Vej, 2100 Copenhagen, Denmark.

出版信息

Int J Legal Med. 2004 Apr;118(2):75-82. doi: 10.1007/s00414-003-0419-y. Epub 2004 Jan 14.

Abstract

We tested the SNP typing protocol developed for the NanoChip electronic microarray by analyzing the four Y chromosome loci SRY1532, SRY8299, TAT, and 92R7. Amplicons of different lengths containing the same locus were purified and addressed to the NanoChip array and fluorescently labelled reporter probes were hybridized to the amplicons. We demonstrated that as little as 10-30 fmol of 50 bp DNA amplicons was sufficient to obtain strong and reproducible results. The hybridization to 50 bp amplicons was up to 10 times more efficient than the hybridization to 200 bp amplicons containing the same SNP. Hybridization to individual amplicons in multiplexes was less efficient suggesting that intramolecular and intermolecular interactions may block access to the target sequence on the NanoChip array. We observed a high risk of contamination with amplicons shorter than 60 bp and therefore, we recommend the use of 60-200 bp amplicons for SNP typing analysis on the NanoChip platform. In a comparative study, we typed the 5 Y chromosome loci M173, 92R7, P25, SRY1532, and M9 in 400 males using the NanoChip SNP typing protocol and the SNaPshot kit. Concording results were obtained for all samples demonstrating the accuracy of the NanoChip SNP typing protocol.

摘要

我们通过分析Y染色体的四个位点SRY1532、SRY8299、TAT和92R7,对为NanoChip电子微阵列开发的单核苷酸多态性(SNP)分型方案进行了测试。将含有相同位点的不同长度扩增子进行纯化,并点样到NanoChip阵列上,然后将荧光标记的报告探针与扩增子杂交。我们证明,低至10 - 30飞摩尔的50碱基对DNA扩增子就足以获得强且可重复的结果。与50碱基对扩增子的杂交效率比与含有相同SNP的200碱基对扩增子的杂交效率高10倍。在多重反应中与单个扩增子的杂交效率较低,这表明分子内和分子间的相互作用可能会阻碍对NanoChip阵列上目标序列的访问。我们观察到短于60碱基对的扩增子存在高污染风险,因此,我们建议在NanoChip平台上进行SNP分型分析时使用60 - 200碱基对的扩增子。在一项比较研究中,我们使用NanoChip SNP分型方案和SNaPshot试剂盒对400名男性的5个Y染色体位点M173、92R7、P25、SRY1532和M9进行了分型。所有样本均获得了一致的结果,证明了NanoChip SNP分型方案的准确性。

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