A high-throughput method for Illumina RNA-Seq library preparation

With the introduction of cost effective, rapid and superior quality next generation sequencing (NGS) techniques, gene expression analysis has become viable for labs conducting small projects as well as large-scale gene expression analysis experiments. However, the available protocols for constructi...

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Main Authors: Ravi eKumar, Yasunori eIchihashi, Seisuke eKimura, Daniel H Chitwood, Lauren R Headland, Jie ePeng, Julin N Maloof, Neelima R Sinha
Format: Article
Language:English
Published: Frontiers Media S.A. 2012-08-01
Series:Frontiers in Plant Science
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fpls.2012.00202/full
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spelling doaj-b93c8bbdc65142cb80747fad673b4fb72020-11-24T23:31:57ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2012-08-01310.3389/fpls.2012.0020228988A high-throughput method for Illumina RNA-Seq library preparationRavi eKumar0Yasunori eIchihashi1Seisuke eKimura2Seisuke eKimura3Daniel H Chitwood4Lauren R Headland5Jie ePeng6Julin N Maloof7Neelima R Sinha8University of California, DavisUniversity of California, DavisUniversity of California, DavisKyoto Sangyo UniversityUniversity of California, DavisUniversity of California, DavisUniversity of California, DavisUniversity of California, DavisUniversity of California, DavisWith the introduction of cost effective, rapid and superior quality next generation sequencing (NGS) techniques, gene expression analysis has become viable for labs conducting small projects as well as large-scale gene expression analysis experiments. However, the available protocols for construction of RNA-Sequencing (RNA-Seq) libraries are expensive and/or difficult to scale for high-throughput applications. Also, most protocols require isolated total RNA as a starting point. We provide a cost-effective RNA-Seq library synthesis protocol that is fast, starts with tissue, and is high-throughput from tissue to synthesized library. We have also designed and report a set of 96 unique barcodes for library adapters that are amenable to high-throughput sequencing by a large combination of multiplexing strategies. Our developed protocol has more power to detect differentially expressed genes when compared to the standard Illumina protocol, probably owing to less technical variation amongst replicates. We also address the problem of gene-length biases affecting differential gene expression calls and demonstrate that such biases can be efficiently minimized during mRNA isolation for library preparation.http://journal.frontiersin.org/Journal/10.3389/fpls.2012.00202/fullSequencingRNA-Seqhigh-throughputcDNA fragmentationIlluminamRNA isolation
collection DOAJ
language English
format Article
sources DOAJ
author Ravi eKumar
Yasunori eIchihashi
Seisuke eKimura
Seisuke eKimura
Daniel H Chitwood
Lauren R Headland
Jie ePeng
Julin N Maloof
Neelima R Sinha
spellingShingle Ravi eKumar
Yasunori eIchihashi
Seisuke eKimura
Seisuke eKimura
Daniel H Chitwood
Lauren R Headland
Jie ePeng
Julin N Maloof
Neelima R Sinha
A high-throughput method for Illumina RNA-Seq library preparation
Frontiers in Plant Science
Sequencing
RNA-Seq
high-throughput
cDNA fragmentation
Illumina
mRNA isolation
author_facet Ravi eKumar
Yasunori eIchihashi
Seisuke eKimura
Seisuke eKimura
Daniel H Chitwood
Lauren R Headland
Jie ePeng
Julin N Maloof
Neelima R Sinha
author_sort Ravi eKumar
title A high-throughput method for Illumina RNA-Seq library preparation
title_short A high-throughput method for Illumina RNA-Seq library preparation
title_full A high-throughput method for Illumina RNA-Seq library preparation
title_fullStr A high-throughput method for Illumina RNA-Seq library preparation
title_full_unstemmed A high-throughput method for Illumina RNA-Seq library preparation
title_sort high-throughput method for illumina rna-seq library preparation
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2012-08-01
description With the introduction of cost effective, rapid and superior quality next generation sequencing (NGS) techniques, gene expression analysis has become viable for labs conducting small projects as well as large-scale gene expression analysis experiments. However, the available protocols for construction of RNA-Sequencing (RNA-Seq) libraries are expensive and/or difficult to scale for high-throughput applications. Also, most protocols require isolated total RNA as a starting point. We provide a cost-effective RNA-Seq library synthesis protocol that is fast, starts with tissue, and is high-throughput from tissue to synthesized library. We have also designed and report a set of 96 unique barcodes for library adapters that are amenable to high-throughput sequencing by a large combination of multiplexing strategies. Our developed protocol has more power to detect differentially expressed genes when compared to the standard Illumina protocol, probably owing to less technical variation amongst replicates. We also address the problem of gene-length biases affecting differential gene expression calls and demonstrate that such biases can be efficiently minimized during mRNA isolation for library preparation.
topic Sequencing
RNA-Seq
high-throughput
cDNA fragmentation
Illumina
mRNA isolation
url http://journal.frontiersin.org/Journal/10.3389/fpls.2012.00202/full
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