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Rapid sequencing of DNA based on single-molecule detection

机译:基于单分子检测的DNA快速测序

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摘要

Abstract: Sequencing the human genome is a major undertaking considering the large number of nucleotides present in the genome and the slow methods currently available to perform the task. The authors have recently reported on a scheme to sequence DNA rapidly using a non-gel based technique. The concept is based upon the incorporation of fluorescently labeled nucleotides into a strand of DNA, isolation and manipulation of a labeled DNA fragment and the detection of single nucleotides using ultra-sensitive laser-induced fluorescence detection following their cleavage from the fragment. Detection of individual fluorophores in the liquid phase was accomplished with time-gated detection following pulsed-laser excitation. The photon bursts from individual rhodamine 6G (R6G) molecules travelling through a laser beam have been observed, as have bursts from single fluorescently modified nucleotides. Using two different biotinylated nucleotides as a model system for fluorescently labeled nucleotides, the authors have observed synthesis of the complementary copy of M13 bacteriophage. Work with fluorescently labeled nucleotides is underway. Individual molecules of DNA attached to a microbead have been observed and manipulated with an epifluorescence microscope.!
机译:摘要:考虑到基因组中存在大量核苷酸和目前可用于执行该任务的缓慢方法,对人类基因组进行测序是一项主要的工作。作者最近报道了一种使用基于非凝胶的技术对DNA进行快速测序的方案。该概念基于将荧光标记的核苷酸掺入DNA链,分离和处理标记的DNA片段,以及在从片段上切割后使用超灵敏激光诱导的荧光检测法检测单个核苷酸。液相中单个荧光团的检测通过脉冲激光激发后的时间门控检测完成。观察到单个罗丹明6G(R6G)分子通过激光束传播的光子爆发,以及单个荧光修饰核苷酸的爆发。使用两种不同的生物素化核苷酸作为荧光标记核苷酸的模型系统,作者观察到了M13噬菌体互补拷贝的合成。荧光标记核苷酸的研究正在进行中。已经观察到附着在微珠上的单个DNA分子,并通过落射荧光显微镜进行了操作。

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