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

利用微滴中的核苷酸释放、捕获和检测对 GC 含量差异很大的单分子 DNA 进行测序

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作者:Tim J Puchtler, Kerr Johnson, Rebecca N Palmer, Emma L Talbot, Lindsey A Ibbotson, Paulina K Powalowska, Rachel Knox, Aya Shibahara, Pedro M S Cunha, Oliver J Newell, Mei Wu, Jasmin Chana, Evangelia-Nefeli Athanasopoulou, Andreas M Waeber, Magdalena Stolarek, Ana-Luisa Silva, Justyna M Mordaka, Mich

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.

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