Ordered DNA Fragmentation and Amplification for NGS Applications
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Ordered DNA Fragmentation and Amplification for NGS Applications

Fragmentation of Surface Adsorbed and Aligned DNA Molecules using Soft Lithography for NGS applications

NaHyun Cho

  1. 128 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF
No longer available |Learn more

Ordered DNA Fragmentation and Amplification for NGS Applications

Fragmentation of Surface Adsorbed and Aligned DNA Molecules using Soft Lithography for NGS applications

NaHyun Cho

Book details
Table of contents
Citations

About This Book

In this study, the enzymatic in situ cutting of linearized DNA molecules at approximately 11kbp intervals is demonstrated using a soft lithography technique. The ultimate goal is to provide a general ordered cutting method to greatly simplify the assembly process of NGS systems by reducing computational reassembly complexity. DNA was stretched onto PMMA (Poly methyl methacrylate) coated silicon by withdrawing the substrate from a DNA solution (a process termed "combing"). The stretched lambda DNA could be linearly cut with a soft lithography stamp used to selectively apply DNase I. After cutting the DNA on the substrate, the DNA fragments are removed from the surface by incubating PMMA in the commercial NEBuffer 3.1 at 75°C. The recovered fragments desorbed into the buffer and were sequenced using the PacBio RS II sequencer without an amplification step. The mean coverage was 2870X for the approximately 11 kbp fragmented sample and 100% of the lambda genome was sequenced. Methods to extend of the technique to ordered fragmentation are discussed.

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Information

Year
2018
ISBN
9786202308304

Table of contents

    Citation styles for Ordered DNA Fragmentation and Amplification for NGS Applications

    APA 6 Citation

    Cho, N. (2018). Ordered DNA Fragmentation and Amplification for NGS Applications (1st ed.). Scholars’ Press. Retrieved from https://www.perlego.com/book/3216636/ordered-dna-fragmentation-and-amplification-for-ngs-applications-fragmentation-of-surface-adsorbed-and-aligned-dna-molecules-using-soft-lithography-for-ngs-applications-pdf (Original work published 2018)

    Chicago Citation

    Cho, NaHyun. (2018) 2018. Ordered DNA Fragmentation and Amplification for NGS Applications. 1st ed. Scholars’ Press. https://www.perlego.com/book/3216636/ordered-dna-fragmentation-and-amplification-for-ngs-applications-fragmentation-of-surface-adsorbed-and-aligned-dna-molecules-using-soft-lithography-for-ngs-applications-pdf.

    Harvard Citation

    Cho, N. (2018) Ordered DNA Fragmentation and Amplification for NGS Applications. 1st edn. Scholars’ Press. Available at: https://www.perlego.com/book/3216636/ordered-dna-fragmentation-and-amplification-for-ngs-applications-fragmentation-of-surface-adsorbed-and-aligned-dna-molecules-using-soft-lithography-for-ngs-applications-pdf (Accessed: 15 October 2022).

    MLA 7 Citation

    Cho, NaHyun. Ordered DNA Fragmentation and Amplification for NGS Applications. 1st ed. Scholars’ Press, 2018. Web. 15 Oct. 2022.