High-throughput SNP discovery and assay development in common bean

Publication Overview
TitleHigh-throughput SNP discovery and assay development in common bean
AuthorsHyten DL, Song Q, Fickus EW, Quigley CV, Lim JS, Choi IY, Hwang EY, Pastor-Corrales M, Cregan PB
TypeJournal Article
Journal NameBMC genomics
Volume11
Year2010
Page(s)475
CitationHyten DL, Song Q, Fickus EW, Quigley CV, Lim JS, Choi IY, Hwang EY, Pastor-Corrales M, Cregan PB. High-throughput SNP discovery and assay development in common bean. BMC genomics. 2010 Aug 16; 11:475.

Abstract

BACKGROUND
Next generation sequencing has significantly increased the speed at which single nucleotide polymorphisms (SNPs) can be discovered and subsequently used as molecular markers for research. Unfortunately, for species such as common bean (Phaseolus vulgaris L.) which do not have a whole genome sequence available, the use of next generation sequencing for SNP discovery is much more difficult and costly. To this end we developed a method which couples sequences obtained from the Roche 454-FLX system (454) with the Illumina Genome Analyzer (GA) for high-throughput SNP discovery.

RESULTS
Using a multi-tier reduced representation library we discovered a total of 3,487 SNPs of which 2,795 contained sufficient flanking genomic sequence for SNP assay development. Using Sanger sequencing to determine the validation rate of these SNPs, we found that 86% are likely to be true SNPs. Furthermore, we designed a GoldenGate assay which contained 1,050 of the 3,487 predicted SNPs. A total of 827 of the 1,050 SNPs produced a working GoldenGate assay (79%).

CONCLUSIONS
Through combining two next generation sequencing techniques we have developed a method that allows high-throughput SNP discovery in any diploid organism without the need of a whole genome sequence or the creation of normalized cDNA libraries. The need to only perform one 454 run and one GA sequencer run allows high-throughput SNP discovery with sufficient sequence for assay development to be performed in organisms, such as common bean, which have limited genomic resources.

Stocks
This publication contains information about 2 stocks:
Stock NameUniquenameType
BAT 93BAT 93accession
Jalo EEP 558Jalo EEP 558accession
Features
This publication contains information about 3,487 features:
Feature NameUniquenameType
BARC-PV-0004417BARC-PV-0004417genetic_marker
BARC-PV-0004418BARC-PV-0004418genetic_marker
BARC-PV-0004419BARC-PV-0004419genetic_marker
BARC-PV-0004420BARC-PV-0004420genetic_marker
BARC-PV-0004421BARC-PV-0004421genetic_marker
BARC-PV-0004422BARC-PV-0004422genetic_marker
BARC-PV-0004423BARC-PV-0004423genetic_marker
BARC-PV-0004424BARC-PV-0004424genetic_marker
BARC-PV-0004425BARC-PV-0004425genetic_marker
BARC-PV-0004426BARC-PV-0004426genetic_marker
BARC-PV-0004427BARC-PV-0004427genetic_marker
BARC-PV-0004428BARC-PV-0004428genetic_marker
BARC-PV-0004429BARC-PV-0004429genetic_marker
BARC-PV-0004430BARC-PV-0004430genetic_marker
BARC-PV-0004431BARC-PV-0004431genetic_marker
BARC-PV-0004432BARC-PV-0004432genetic_marker
BARC-PV-0004433BARC-PV-0004433genetic_marker
BARC-PV-0004434BARC-PV-0004434genetic_marker
BARC-PV-0004435BARC-PV-0004435genetic_marker
BARC-PV-0004436BARC-PV-0004436genetic_marker
BARC-PV-0004437BARC-PV-0004437genetic_marker
BARC-PV-0004438BARC-PV-0004438genetic_marker
BARC-PV-0004439BARC-PV-0004439genetic_marker
BARC-PV-0004440BARC-PV-0004440genetic_marker
BARC-PV-0004441BARC-PV-0004441genetic_marker

Pages

Properties
Additional details for this publication include:
Property NameValue
Publication Date2010 Aug 16
Journal AbbreviationBMC Genomics
DOI10.1186/1471-2164-11-475
Elocation10.1186/1471-2164-11-475
Publication ModelElectronic
ISSN1471-2164
eISSN1471-2164
Publication TypeJournal Article
Journal CountryEngland
LanguageEnglish
Language Abbreng
Publication TypeResearch Support, U.S. Gov't, Non-P.H.S.