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Length-independent DNA packing into nanopore zero-mode waveguides for low-input DNA sequencing

机译:用于纳米孔零模式波导的长度无关的DNA包装,用于低输入DNA测序

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Compared with conventional methods, single-molecule real-time (SMRT) DNA sequencing exhibits longer read lengths than conventional methods, less GC bias, and the ability to read DNA base modifications. However, reading DNA sequence from sub-nanogram quantities is impractical owing to inefficient delivery of DNA molecules into the confines of zero-mode waveguides-zeptolitre optical cavities in which DNA sequencing proceeds. Here, we show that the efficiency of voltage-induced DNA loading into waveguides equipped with nanopores at their floors is five orders of magnitude greater than existing methods. In addition, we find that DNA loading is nearly length-independent, unlike diffusive loading, which is biased towards shorter fragments. We demonstrate here loading and proof-of-principle four-colour sequence readout of a polymerase-bound 20,000-base-pair-long DNA template within seconds from a sub-nanogram input quantity, a step towards low-input DNA sequencing and mammalian epigenomic mapping of native DNA samples.
机译:与常规方法相比,单分子实时(SMRT)DNA测序表现出比常规方法,较少的GC偏倚和读取DNA碱基修饰的能力更长的读取长度。然而,由于DNA分子递减到零模式波导 - Zeptolero光学腔的限制,读取来自子纳米图量的DNA序列是不切实际的。在这里,我们表明将电压诱导的DNA装载到其楼层配备有纳米孔的波导的效率是大于现有方法的五个数量级。此外,我们发现DNA装载几乎与差异无关,与扩散负载不同,这与较短的碎片偏置。我们在这里展示了在几秒钟内加载和原则上的原则上的四色序列读出的聚合酶结合的20,000-碱基对长DNA模板,源于亚纳克输入量,是朝向低输入DNA测序和哺乳动物表观表观的步骤原生DNA样品的映射。

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