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DNA 测序——跨越世代。

DNA sequencing - spanning the generations.

机构信息

CEA, DSV, IG-Centre National de Genotypage, 2 rue Gaston Cremieux, 91057 Evry, France.

出版信息

N Biotechnol. 2013 May 25;30(4):366-72. doi: 10.1016/j.nbt.2012.11.012. Epub 2012 Nov 16.

Abstract

Nucleic acid sequencing is the mainstay of biological research. There are several generations of DNA sequencing technologies that can be well characterized through their nature and the kind of output they provide. Dideoxy terminator sequencing developed by Sanger dominated for 30 years and was the workhorse used for the Human Genome Project. In 2005 the first 2nd generation sequencer was presented with an output orders of magnitude higher than Sanger sequencing and dramatically decreased cost. We are now at the dawn of 3rd generation with nanopore systems that are being developed for DNA sequencing. Meanwhile the field is also broadening into applications that complement 1st, 2nd and 3rd generation sequencing systems to get high resolution genetic information. The REvolutionary Approaches and Devices for Nucleic Acid analysis (READNA) consortium funded by the European Commission under FP7 has made great contributions to the development of new nucleic acid analysis methodology.

摘要

核酸测序是生物研究的主要支柱。有几代 DNA 测序技术,可以通过它们的性质和提供的输出类型来很好地描述。由 Sanger 开发的双脱氧终止测序主导了 30 年,是人类基因组计划使用的主力。2005 年,第一代第二代测序仪问世,其输出比 Sanger 测序高出几个数量级,成本也大幅降低。我们现在正处于第三代纳米孔系统测序的黎明时期。与此同时,该领域也在扩展到应用领域,这些应用领域补充了第一代、第二代和第三代测序系统,以获取高分辨率的遗传信息。由欧盟委员会在 FP7 下资助的核酸分析的革命性方法和设备(READNA)联盟为新的核酸分析方法学的发展做出了巨大贡献。

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