Nucleic Acids Research · 2011 · 119 citations · 27 references
EngineeringMolecular BiologyEscherichia ColiTranscriptomics TechnologyHigh Throughput SequencingDsn TreatmentTranscriptomicsRna ProcessingRna Structure PredictionSequence AnalysisRna BiologyGene ExpressionDuplex-specific NucleaseBioinformaticsFunctional GenomicsRrna RemovalMicrobiologySystems BiologyMedicine
Next-generation sequencing has great potential for application in bacterial transcriptomics. However, unlike eukaryotes, bacteria have no clear mechanism to select mRNAs over rRNAs; therefore, rRNA removal is a critical step in sequencing-based transcriptomics. Duplex-specific nuclease (DSN) is an enzyme that, at high temperatures, degrades duplex DNA in preference to single-stranded DNA. DSN treatment has been successfully used to normalize the relative transcript abundance in mRNA-enriched cDNA libraries from eukaryotic organisms. In this study, we demonstrate the utility of this method to remove rRNA from prokaryotic total RNA. We evaluated the efficacy of DSN to remove rRNA by comparing it with the conventional subtractive hybridization (Hyb) method. Illumina deep sequencing was performed to obtain transcriptomes from Escherichia coli grown under four growth conditions. The results clearly showed that our DSN treatment was more efficient at removing rRNA than the Hyb method was, while preserving the original relative abundance of mRNA species in bacterial cells. Therefore, we propose that, for bacterial mRNA-seq experiments, DSN treatment should be preferred to Hyb-based methods.
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Mapping and quantifying mammalian transcriptomes by RNA-Seq
A Mortazavi, Brian A. Williams, Kenneth McCue et al. · Nature Methods · 2008 · 14K citations
Functional Genomics, Genetics, Transcriptomics Technology +7
The RIN: an RNA integrity number for assigning integrity values to RNA measurements
Andreas Schröeder, Odilo Mueller, Susanne Stocker et al. · BMC Molecular Biology · 2006 · 2.6K citations · Full text