article Open AccessTop 1% cited
Analyzing and minimizing PCR amplification bias in Illumina sequencing libraries
Genome biology · 2011 · Vol. 12(2) · pp. R18–R18
Daniel Aird✉(Broad Institute)Michael Ross(Broad Institute)Wei‐Sheng Chen(Boston Latin Academy)Maxwell Danielsson(Boston Latin Academy)Timothy R. Fennell(Broad Institute)Carsten Russ(Broad Institute)David B. Jaffe(Broad Institute)Chad Nusbaum(Broad Institute)Andreas Gnirke(Broad Institute)
Abstract
Despite the ever-increasing output of Illumina sequencing data, loci with extreme base compositions are often under-represented or absent. To evaluate sources of base-composition bias, we traced genomic sequences ranging from 6% to 90% GC through the process by quantitative PCR. We identified PCR during library preparation as a principal source of bias and optimized the conditions. Our improved protocol significantly reduces amplification bias and minimizes the previously severe effects of PCR instrument and temperature ramp rate.
Genomics and Phylogenetic StudiesMolecular Biology Techniques and ApplicationsPlant Disease Resistance and GeneticsBiologyHuman geneticsIllumina dye sequencingComputational biologyGenome BiologyGeneticsDNA sequencingComputational genomicsGenomicsGenome
MeSH terms
Base CompositionEscherichia coliHumansNucleic Acid DenaturationPlasmodium falciparumTemperatureGenomic LibraryGenome, HumanArtifactsSequence Analysis, DNAGenomicsGenetic LociReal-Time Polymerase Chain Reaction
Funding
- Broad Institute
- National Human Genome Research Institute
- National Institute of Allergy and Infectious Diseases
Citations
1,223
FWCI
35.27
field-weighted impact
References
22
Percentile
100%
vs. same field & year
Citations per year
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References
Fast and accurate short read alignment with Burrows–Wheeler transform
Bioinformatics · 2009 · 61,752 citations
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