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<p><span style="font-family:comic sans ms,cursive"><span style="font-size:14px">There are four types of sequencing methods.</span></span></p>
 
<p><span style="font-family:comic sans ms,cursive"><span style="font-size:14px">1. Sanger sequencing</span></span></p>
 
<p><img alt="sanger sequencing에 대한 이미지 검색결과" src="https://upload.wikimedia.org/wikipedia/commons/thumb/3/3d/Radioactive_Fluorescent_Seq.jpg/220px-Radioactive_Fluorescent_Seq.jpg" /></p>
 
<p><span style="font-size:14px"><span style="font-family:comic sans ms,cursive">Sanger sequencing&nbsp;is a method of DNA sequencing&nbsp;based on the selective incorporation of chain-terminating dideoxynucleotides(ddNTPs)&nbsp;by DNA polymerase&nbsp;during in vitro DNA replication. This method was developed by Fredric Sanger and colleagues in 1977. </span></span></p>
 
<p><span style="font-size:14px"><span style="font-family:comic sans ms,cursive">2. Next-generation sequencing (NGS)</span></span></p>
 
<p><img alt="next generation sequencing에 대한 이미지 검색결과" src="http://image.slidesharecdn.com/introductiontonextgenerationsequencingv2-110927082709-phpapp02/95/introduction-to-next-generation-sequencing-29-728.jpg?cb=1317179320" style="height:400px; width:350px" /></p>
 
<p><span style="font-size:14px"><span style="font-family:comic sans ms,cursive">Next-generation sequencing&nbsp;is the catch-all term used to describe a number of different modern sequencing technologies including Illumina sequencing, Roche 454 sequencing, Ion torrent: Proton/ PGM sequencing, and SOLiD sequencing.&nbsp;These recent technologies allow us to sequence DNA and RNA much more quickly and cheaply than the previously used Sanger sequencing, and as such have revolutionised the study of genomics and molecular biology.</span></span></p>
 
<p>3. Methyl sequencing (Methyl-seq)</p>
 
<p>&nbsp;</p>
 
<p>&nbsp;</p>
<p>Sanger, NGS, Methyl-seq, ATAC-seq</p>
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