van Eijk Michiel J T, Broekhof José L N, van der Poel Hein J A, Hogers René C J, Schneiders Harrie, Kamerbeek Judith, Verstege Esther, van Aart Joris W, Geerlings Henk, Buntjer Jaap B, van Oeveren A Jan, Vos Pieter
Keygene NV, Agro Business Park 90, PO Box 216, 6700 AE Wageningen, The Netherlands.
Nucleic Acids Res. 2004 Mar 5;32(4):e47. doi: 10.1093/nar/gnh045.
Scalable multiplexed amplification technologies are needed for cost-effective large-scale genotyping of genetic markers such as single nucleotide polymorphisms (SNPs). We present SNPWave, a novel SNP genotyping technology to detect various subsets of sequences in a flexible fashion in a fixed detection format. SNPWave is based on highly multiplexed ligation, followed by amplification of up to 20 ligated probes in a single PCR. Depending on the multiplexing level of the ligation reaction, the latter employs selective amplification using the amplified fragment length polymorphism (AFLP) technology. Detection of SNPWave reaction products is based on size separation on a sequencing instrument with multiple fluorescence labels and short run times. The SNPWave technique is illustrated by a 100-plex genotyping assay for Arabidopsis, a 40-plex assay for tomato and a 10-plex assay for Caenorhabditis elegans, detected on the MegaBACE 1000 capillary sequencer.
对于单核苷酸多态性(SNP)等遗传标记进行具有成本效益的大规模基因分型,需要可扩展的多重扩增技术。我们提出了SNPWave,这是一种新型的SNP基因分型技术,能够以固定的检测形式灵活地检测各种序列子集。SNPWave基于高度多重连接,随后在单个PCR中对多达20个连接的探针进行扩增。根据连接反应的多重水平,后者采用扩增片段长度多态性(AFLP)技术进行选择性扩增。SNPWave反应产物的检测基于在具有多个荧光标记且运行时间短的测序仪上进行大小分离。通过在MegaBACE 1000毛细管测序仪上检测的拟南芥100重基因分型分析、番茄40重分析和秀丽隐杆线虫10重分析,展示了SNPWave技术。