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De novo assembly of human genomes with massively parallel short read sequencing

Genome Research · 2009 · Vol. 20(2) · pp. 265–272
Ruiqiang LiHongmei ZhuJue RuanWubin QianXiaodong FangZhongbin ShiYingrui LiShengting LiShan GaoKarsten KristiansenSonggang LiHuanming YangJian WangJun Wang

Abstract

Next-generation massively parallel DNA sequencing technologies provide ultrahigh throughput at a substantially lower unit data cost; however, the data are very short read length sequences, making de novo assembly extremely challenging. Here, we describe a novel method for de novo assembly of large genomes from short read sequences. We successfully assembled both the Asian and African human genome sequences, achieving an N50 contig size of 7.4 and 5.9 kilobases (kb) and scaffold of 446.3 and 61.9 kb, respectively. The development of this de novo short read assembly method creates new opportunities for building reference sequences and carrying out accurate analyses of unexplored genomes in a cost-effective way.

Genomics and Phylogenetic StudiesRNA and protein synthesis mechanismsChromosomal and Genetic VariationsContigSequence assemblyBiologyMassive parallel sequencingHybrid genome assemblyMassively parallelGenomeDNA sequencingComputational biologyHuman genome

MeSH terms

HumansGenome, HumanHuman Genome ProjectSequence AlignmentSequence Analysis, DNAOligonucleotide Array Sequence AnalysisBlack PeopleAsian People

Funding

  • National Natural Science Foundation of China
  • National High-tech Research and Development Program
  • National Key Research and Development Program of China
Citations
2,991
FWCI
field-weighted impact
References
33
Percentile
vs. same field & year
Citations per year
References
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Genome Research · 2009 · 3,741 citations
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Nature · 2001 · 24,452 citations
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ABySS: A parallel assembler for short read sequence data
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