Literature DB >> 21712251

Paired-end RAD-seq for de novo assembly and marker design without available reference.

Eva-Maria Willing1, Margarete Hoffmann, Juliane D Klein, Detlef Weigel, Christine Dreyer.   

Abstract

MOTIVATION: Next-generation sequencing technologies have facilitated the study of organisms on a genome-wide scale. A recent method called restriction site associated DNA sequencing (RAD-seq) allows to sample sequence information at reduced complexity across a target genome using the Illumina platform. Single-end RAD-seq has proven to provide a large number of informative genetic markers in reference as well as non-reference organisms.
RESULTS: Here, we present a method for de novo assembly of paired-end RAD-seq data in order to produce extended contigs flanking a restriction site. We were able to reconstruct one-tenth of the guppy genome represented by 200-500 bp contigs associated to EcoRI recognition sites. In addition, these contigs were used as reference allowing the detection of thousands of new polymorphic markers that are informative for mapping and population genetic studies in the guppy. AVAILABILITY: A perl and C++ implementation of the method demonstrated in this article is available under http://guppy.weigelworld.org/weigeldatabases/radMarkers/ as package RApiD. CONTACT: christine.dreyer@tuebingen.mpg.de SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online.

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Year:  2011        PMID: 21712251     DOI: 10.1093/bioinformatics/btr346

Source DB:  PubMed          Journal:  Bioinformatics        ISSN: 1367-4803            Impact factor:   6.937


  39 in total

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4.  Using Mendelian inheritance to improve high-throughput SNP discovery.

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5.  Reference-free detection of isolated SNPs.

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7.  SNP discovery in common bean by restriction-associated DNA (RAD) sequencing for genetic diversity and population structure analysis.

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8.  Genomic resources for multiple species in the Drosophila ananassae species group.

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9.  Identification of soybean drought-tolerant genotypes and loci correlated with agronomic traits contributes new candidate genes for breeding.

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10.  Local assemblies of paired-end reduced representation libraries sequenced with the illumina genome analyzer in maize.

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