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  • 1
    Publikationsdatum: 2009-09-25
    Beschreibung: Our understanding of human biology and disease is ultimately dependent on a complete understanding of the genome and its functions. The recent application of microarray and sequencing technologies to transcriptomics has changed the simplistic view of transcriptomes to a more complicated view of genome-wide transcription where a large fraction of transcripts emanates from unannotated parts of genomes, and underlined our limited knowledge of the dynamic state of transcription. Most of this broad body of knowledge was obtained indirectly because current transcriptome analysis methods typically require RNA to be converted to complementary DNA (cDNA) before measurements, even though the cDNA synthesis step introduces multiple biases and artefacts that interfere with both the proper characterization and quantification of transcripts. Furthermore, cDNA synthesis is not particularly suitable for the analysis of short, degraded and/or small quantity RNA samples. Here we report direct single molecule RNA sequencing without prior conversion of RNA to cDNA. We applied this technology to sequence femtomole quantities of poly(A)(+) Saccharomyces cerevisiae RNA using a surface coated with poly(dT) oligonucleotides to capture the RNAs at their natural poly(A) tails and initiate sequencing by synthesis. We observed transcript 3' end heterogeneity and polyadenylated small nucleolar RNAs. This study provides a path to high-throughput and low-cost direct RNA sequencing and achieving the ultimate goal of a comprehensive and bias-free understanding of transcriptomes.〈br /〉〈span class="detail_caption"〉Notes: 〈/span〉Ozsolak, Fatih -- Platt, Adam R -- Jones, Dan R -- Reifenberger, Jeffrey G -- Sass, Lauryn E -- McInerney, Peter -- Thompson, John F -- Bowers, Jayson -- Jarosz, Mirna -- Milos, Patrice M -- R01 HG005230/HG/NHGRI NIH HHS/ -- England -- Nature. 2009 Oct 8;461(7265):814-8. doi: 10.1038/nature08390. Epub 2009 Sep 23.〈br /〉〈span class="detail_caption"〉Author address: 〈/span〉Helicos BioSciences Corporation, One Kendall Square, Cambridge, Massachusetts 02139, USA. fatihozsolak@gmail.com〈br /〉〈span class="detail_caption"〉Record origin:〈/span〉 〈a href="http://www.ncbi.nlm.nih.gov/pubmed/19776739" target="_blank"〉PubMed〈/a〉
    Schlagwort(e): DNA, Complementary/genetics ; Gene Expression Profiling/methods ; Oligoribonucleotides/genetics ; Polymerase Chain Reaction ; RNA/*analysis/*genetics/isolation & purification ; RNA, Fungal/analysis/genetics/isolation & purification ; Saccharomyces cerevisiae/genetics ; Sequence Analysis, RNA/*methods ; Templates, Genetic
    Print ISSN: 0028-0836
    Digitale ISSN: 1476-4687
    Thema: Biologie , Chemie und Pharmazie , Medizin , Allgemeine Naturwissenschaft , Physik
    Standort Signatur Erwartet Verfügbarkeit
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  • 2
    Publikationsdatum: 2015-04-01
    Beschreibung: The “mustard oil bomb” is a major defense mechanism in the Brassicaceae, which includes crops such as canola and the model plant Arabidopsis thaliana. These plants produce and store blends of amino acid-derived secondary metabolites called glucosinolates. Upon tissue rupture by natural enemies, the myrosinase enzyme hydrolyses glucosinolates, releasing defense...
    Print ISSN: 0027-8424
    Digitale ISSN: 1091-6490
    Thema: Biologie , Medizin , Allgemeine Naturwissenschaft
    Standort Signatur Erwartet Verfügbarkeit
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  • 3
    Publikationsdatum: 1879-05-17
    Print ISSN: 0036-8733
    Digitale ISSN: 1946-7087
    Thema: Biologie , Allgemeine Naturwissenschaft , Physik
    Publiziert von Springer Nature
    Standort Signatur Erwartet Verfügbarkeit
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