Multiplex Target Enrichment Using DNA Indexing for Ultra-High Throughput SNP Detection
نویسندگان
چکیده
Screening large numbers of target regions in multiple DNA samples for sequence variation is an important application of next-generation sequencing but an efficient method to enrich the samples in parallel has yet to be reported. We describe an advanced method that combines DNA samples using indexes or barcodes prior to target enrichment to facilitate this type of experiment. Sequencing libraries for multiple individual DNA samples, each incorporating a unique 6-bp index, are combined in equal quantities, enriched using a single in-solution target enrichment assay and sequenced in a single reaction. Sequence reads are parsed based on the index, allowing sequence analysis of individual samples. We show that the use of indexed samples does not impact on the efficiency of the enrichment reaction. For three- and nine-indexed HapMap DNA samples, the method was found to be highly accurate for SNP identification. Even with sequence coverage as low as 8x, 99% of sequence SNP calls were concordant with known genotypes. Within a single experiment, this method can sequence the exonic regions of hundreds of genes in tens of samples for sequence and structural variation using as little as 1 μg of input DNA per sample.
منابع مشابه
Analytical validation of the tag-it high-throughput microsphere-based universal array genotyping platform: application to the multiplex detection of a panel of thrombophilia-associated single-nucleotide polymorphisms.
BACKGROUND We have developed a novel, microsphere-based universal array platform referred to as the Tag-It platform. This platform is suitable for high-throughput clinical genotyping applications and was used for multiplex analysis of a panel of thrombophilia-associated single-nucleotide polymorphisms (SNPs). METHODS Genomic DNA from 132 patients was amplified by multiplex PCR using 6 primer ...
متن کاملMultiplex single-nucleotide polymorphism typing by nanoparticle-coupled DNA-templated reactions.
A novel chip-based detection approach for single-nucleotide polymorphism (SNP) typing based on nanoparticle-coupled DNA-templated ligation reactions is reported. In contrast to conventional methods or recently developed techniques, this approach does not need costly instrumentation and complex stringency washing processes and offers both rapid multiplex SNP detection capability and ultrahigh se...
متن کاملList of Publications Faculty Opponent
This thesis is based on the following publications, which are referred to in the text by their Roman numerals. " Silhouette " scores for assessment of SNP genotype clusters. BMC Genom-ics.resolution, high-throughput SNP mapping in Drosophila melanogaster. Positional cloning by fast-track SNP-mapping in Droso-phila melanogaster. Dried reagents for multiplex genotyping by tag-array minisequencing...
متن کاملHigh-Throughput SNP Genotyping
Whole genome approaches using single nucleotide polymorphism (SNP) markers have the potential to transform complex disease genetics and expedite pharmacogenetics research. This has led to a requirement for high-throughput SNP genotyping platforms. Development of a successful high-throughput genotyping platform depends on coupling reliable assay chemistry with an appropriate detection system to ...
متن کاملTechnical note : Molecular Index counting adjustment methods
BD Precise assays are fast, high-throughput, next-generation sequencing (NGS) library preparation kits tailored for small quantity RNA samples, such as single cells, using patented BDTM Molecular Indexing (MI) technology with Sample Index (SI) to label individual mRNA transcripts. During reverse transcription, the BD Precise assays apply a non-depleting pool of 6,561 MI barcodes (or 65,536 barc...
متن کامل