Heather James M, Chain Benjamin
Division of Infection & Immunity, UCL Cruciform Building, Gower Street, London, United Kingdom.
Division of Infection & Immunity, UCL Cruciform Building, Gower Street, London, United Kingdom.
Genomics. 2016 Jan;107(1):1-8. doi: 10.1016/j.ygeno.2015.11.003. Epub 2015 Nov 10.
Determining the order of nucleic acid residues in biological samples is an integral component of a wide variety of research applications. Over the last fifty years large numbers of researchers have applied themselves to the production of techniques and technologies to facilitate this feat, sequencing DNA and RNA molecules. This time-scale has witnessed tremendous changes, moving from sequencing short oligonucleotides to millions of bases, from struggling towards the deduction of the coding sequence of a single gene to rapid and widely available whole genome sequencing. This article traverses those years, iterating through the different generations of sequencing technology, highlighting some of the key discoveries, researchers, and sequences along the way.
确定生物样本中核酸残基的顺序是各种研究应用中不可或缺的一部分。在过去的五十年里,大量研究人员致力于开发相关技术和方法以实现这一目标,即对DNA和RNA分子进行测序。在这段时间里,测序技术发生了巨大的变化,从对短寡核苷酸进行测序发展到对数百万碱基进行测序,从艰难地推导单个基因的编码序列到快速且广泛可用的全基因组测序。本文回顾了这些年的发展历程,依次介绍了不同代次的测序技术,重点突出了这一过程中的一些关键发现、研究人员和测序成果。