z-logo
open-access-imgOpen Access
Simultaneous Digital Quantification and Fluorescence-Based Size Characterization of Massively Parallel Sequencing Libraries
Author(s) -
Matthew T. Laurie,
Jessica A. Bertout,
Sean D. Taylor,
Joshua N. Burton,
Jay Shendure,
Jason H. Bielas
Publication year - 2013
Publication title -
biotechniques
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.617
H-Index - 131
eISSN - 1940-9818
pISSN - 0736-6205
DOI - 10.2144/000114063
Subject(s) - massive parallel sequencing , digital polymerase chain reaction , amplicon , massively parallel , dna sequencing , capillary electrophoresis , computer science , computational biology , chromatography , biology , dna , chemistry , polymerase chain reaction , genetics , parallel computing , gene
Due to the high cost of failed runs and suboptimal data yields, quantification and determination of fragment size range are crucial steps in the library preparation process for massively parallel sequencing (or next-generation sequencing). Current library quality control methods commonly involve quantification using real-time quantitative PCR and size determination using gel or capillary electrophoresis. These methods are laborious and subject to a number of significant limitations that can make library calibration unreliable. Herein, we propose and test an alternative method for quality control of sequencing libraries using droplet digital PCR (ddPCR). By exploiting a correlation we have discovered between droplet fluorescence and amplicon size, we achieve the joint quantification and size determination of target DNA with a single ddPCR assay. We demonstrate the accuracy and precision of applying this method to the preparation of sequencing libraries.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here
Accelerating Research

Address

John Eccles House
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom