A Modified Method for Whole Exome Resequencing from Minimal Amounts of Starting DNA
Open Access
- 5 March 2012
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 7 (3), e32617
- https://doi.org/10.1371/journal.pone.0032617
Abstract
Next generation DNA sequencing (NGS) technologies have revolutionized the pace at which whole genome and exome sequences can be generated. However, despite these advances, many of the methods for targeted resequencing, such as the generation of high-depth exome sequences, are somewhat limited by the relatively large amounts of starting DNA that are normally required. In the case of tumour analysis this is particularly pertinent as many tumour biopsies often return submicrogram quantities of DNA, especially when tumours are microdissected prior to analysis. Here, we present a method for exome capture and resequencing using as little as 50 ng of starting DNA. The sequencing libraries generated by this minimal starting amount (MSA-Cap) method generate datasets that are comparable to standard amount (SA) whole exome libraries that use three micrograms of starting DNA. This method, which can be performed in most laboratories using commonly available reagents, has the potential to enhance large scale profiling efforts such as the resequencing of tumour exomes.Keywords
This publication has 15 references indexed in Scilit:
- The value of fine needle aspiration biopsy in the diagnosis and prognostic assessment of palpable breast lesionsDiagnostic Cytopathology, 2010
- A compendium of myeloma-associated chromosomal copy number abnormalities and their prognostic valueBlood, 2010
- The Genome Analysis Toolkit: A MapReduce framework for analyzing next-generation DNA sequencing dataGenome Research, 2010
- Target-enrichment strategies for next-generation sequencingNature Methods, 2010
- Fast and accurate long-read alignment with Burrows–Wheeler transformBioinformatics, 2010
- A comprehensive catalogue of somatic mutations from a human cancer genomeNature, 2009
- A small-cell lung cancer genome with complex signatures of tobacco exposureNature, 2009
- Identification of somatically acquired rearrangements in cancer using genome-wide massively parallel paired-end sequencingNature Genetics, 2008
- Genome-wide in situ exon capture for selective resequencingNature Genetics, 2007
- The International HapMap ProjectNature, 2003