Multiple insert size paired-end sequencing for deconvolution of complex transcriptomes Journal Article


Authors: Smith, L. M.; Hartmann, L.; Drewe, P.; Bohnert, R.; Kahles, A.; Lanz, C.; Ratsch, G.
Article Title: Multiple insert size paired-end sequencing for deconvolution of complex transcriptomes
Abstract: Deep sequencing of transcriptomes allows quantitative and qualitative analysis of many RNA species in a sample, with parallel comparison of expression levels, splicing variants, natural antisense transcripts, RNA editing and transcriptional start and stop sites the ideal goal. By computational modeling, we show how libraries of multiple insert sizes combined with strand-specific, paired-end (SS -PE ) sequencing can increase the information gained on alternative splicing, especially in higher eukaryotes. Despite the benefits of gaining SS -PE data with paired ends of varying distance, the standard Illumina protocol allows only non-strand-specific, paired-end sequencing with a single insert size. Here, we modify the Illumina RNA ligation protocol to allow SS -PE sequencing by using a custom pre-adenylated 3′ adaptor. We generate parallel libraries with differing insert sizes to aid deconvolution of alternative splicing events and to characterize the extent and distribution of natural antisense transcription in C. elegans. Despite stringent requirements for detection of alternative splicing, our data increases the number of intron retention and exon skipping events annotated in the Wormbase genome by 127% and 121%, respectively. We show that parallel libraries with a range of insert sizes increase transcriptomic information gained by sequencing and that by current established benchmarks our protocol gives competitive results with respect to library quality. © 2012 Landes Bioscience.
Keywords: controlled study; exon; nonhuman; animals; gene expression profiling; intron; transcription, genetic; molecular library; gene library; oligonucleotide array sequence analysis; alternative splicing; alternative rna splicing; genome; caenorhabditis elegans; sequence analysis, rna; transcriptome; protein isoforms; molecular model; rna sequence; databases, genetic; protocol; c. elegans; caenorhabditis elegans proteins; genes, helminth; rna-seq; antisense transcription; transcriptomes; high-throughput nucleotide sequencing; multiple insert size rna library; strand specific paired end rna sequencing
Journal Title: RNA Biology
Volume: 9
Issue: 5
ISSN: 1547-6286
Publisher: Taylor & Francis Group  
Date Published: 2012-05-01
Start Page: 596
End Page: 609
Language: English
DOI: 10.4161/rna.19683
PROVIDER: scopus
PUBMED: 22614838
DOI/URL:
Notes: --- - "Export Date: 2 July 2012" - "Source: Scopus"
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  1. Gunnar Ratsch
    68 Ratsch