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Single-molecule DNA sequencing of widely varying GC-content using nucleotide release, capture and detection in microdroplets.


ABSTRACT: Despite remarkable progress in DNA sequencing technologies there remains a trade-off between short-read platforms, having limited ability to sequence homopolymers, repeated motifs or long-range structural variation, and long-read platforms, which tend to have lower accuracy and/or throughput. Moreover, current methods do not allow direct readout of epigenetic modifications from a single read. With the aim of addressing these limitations, we have developed an optical electrowetting sequencing platform that uses step-wise nucleotide triphosphate (dNTP) release, capture and detection in microdroplets from single DNA molecules. Each microdroplet serves as a reaction vessel that identifies an individual dNTP based on a robust fluorescence signal, with the detection chemistry extended to enable detection of 5-methylcytosine. Our platform uses small reagent volumes and inexpensive equipment, paving the way to cost-effective single-molecule DNA sequencing, capable of handling widely varying GC-bias, and demonstrating direct detection of epigenetic modifications.

SUBMITTER: Puchtler TJ 

PROVIDER: S-EPMC7736801 | biostudies-literature | 2020 Nov

REPOSITORIES: biostudies-literature

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Single-molecule DNA sequencing of widely varying GC-content using nucleotide release, capture and detection in microdroplets.

Puchtler Tim J TJ   Johnson Kerr K   Palmer Rebecca N RN   Talbot Emma L EL   Ibbotson Lindsey A LA   Powalowska Paulina K PK   Knox Rachel R   Shibahara Aya A   M S Cunha Pedro P   Newell Oliver J OJ   Wu Mei M   Chana Jasmin J   Athanasopoulou Evangelia-Nefeli EN   Waeber Andreas M AM   Stolarek Magdalena M   Silva Ana-Luisa AL   Mordaka Justyna M JM   Haggis-Powell Michael M   Xyrafaki Christina C   Bush James J   Topkaya Ibrahim S IS   Sosna Maciej M   Ingham Richard J RJ   Huckvale Thomas T   Negrea Aurel A   Breiner Boris B   Šlikas Justinas J   Kelly Douglas J DJ   Dunning Alexander J AJ   Bell Neil M NM   Dethlefsen Mark M   Love David M DM   Dear Paul H PH   Kuleshova Jekaterina J   Podd Gareth J GJ   Isaac Tom H TH   Balmforth Barnaby W BW   Frayling Cameron A CA  

Nucleic acids research 20201201 22


Despite remarkable progress in DNA sequencing technologies there remains a trade-off between short-read platforms, having limited ability to sequence homopolymers, repeated motifs or long-range structural variation, and long-read platforms, which tend to have lower accuracy and/or throughput. Moreover, current methods do not allow direct readout of epigenetic modifications from a single read. With the aim of addressing these limitations, we have developed an optical electrowetting sequencing pla  ...[more]

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