» Articles » PMID: 23157543

A Toolkit for Bulk PCR-based Marker Design from Next-generation Sequence Data: Application for Development of a Framework Linkage Map in Bulb Onion (Allium Cepa L.)

Overview
Journal BMC Genomics
Publisher Biomed Central
Specialty Genetics
Date 2012 Nov 20
PMID 23157543
Citations 15
Authors
Affiliations
Soon will be listed here.
Abstract

Background: Although modern sequencing technologies permit the ready detection of numerous DNA sequence variants in any organisms, converting such information to PCR-based genetic markers is hampered by a lack of simple, scalable tools. Onion is an example of an under-researched crop with a complex, heterozygous genome where genome-based research has previously been hindered by limited sequence resources and genetic markers.

Results: We report the development of generic tools for large-scale web-based PCR-based marker design in the Galaxy bioinformatics framework, and their application for development of next-generation genetics resources in a wide cross of bulb onion (Allium cepa L.). Transcriptome sequence resources were developed for the homozygous doubled-haploid bulb onion line 'CUDH2150' and the genetically distant Indian landrace 'Nasik Red', using 454™ sequencing of normalised cDNA libraries of leaf and shoot. Read mapping of 'Nasik Red' reads onto 'CUDH2150' assemblies revealed 16836 indel and SNP polymorphisms that were mined for portable PCR-based marker development. Tools for detection of restriction polymorphisms and primer set design were developed in BioPython and adapted for use in the Galaxy workflow environment, enabling large-scale and targeted assay design. Using PCR-based markers designed with these tools, a framework genetic linkage map of over 800cM spanning all chromosomes was developed in a subset of 93 F(2) progeny from a very large F(2) family developed from the 'Nasik Red' x 'CUDH2150' inter-cross. The utility of tools and genetic resources developed was tested by designing markers to transcription factor-like polymorphic sequences. Bin mapping these markers using a subset of 10 progeny confirmed the ability to place markers within 10 cM bins, enabling increased efficiency in marker assignment and targeted map refinement. The major genetic loci conditioning red bulb colour (R) and fructan content (Frc) were located on this map by QTL analysis.

Conclusions: The generic tools developed for the Galaxy environment enable rapid development of sets of PCR assays targeting sequence variants identified from Illumina and 454 sequence data. They enable non-specialist users to validate and exploit large volumes of next-generation sequence data using basic equipment.

Citing Articles

Possible stochastic sex determination in Bursaphelenchus nematodes.

Shinya R, Sun S, Dayi M, Tsai I, Miyama A, Chen A Nat Commun. 2022; 13(1):2574.

PMID: 35546147 PMC: 9095866. DOI: 10.1038/s41467-022-30173-2.


Genotyping-by-Sequencing Derived Genetic Linkage Map and Quantitative Trait Loci for Sugar Content in Onion ( L.).

Lee Y, Kim C, Han J, Choi H, Han K, Lee E Plants (Basel). 2021; 10(11).

PMID: 34834630 PMC: 8625195. DOI: 10.3390/plants10112267.


Construction of a high-density linkage map and graphical representation of the arrangement of transcriptome-based unigene markers on the chromosomes of onion, Allium cepa L.

Fujito S, Akyol T, Mukae T, Wako T, Yamashita K, Tsukazaki H BMC Genomics. 2021; 22(1):481.

PMID: 34174821 PMC: 8236188. DOI: 10.1186/s12864-021-07803-y.


VCF2CAPS-A high-throughput CAPS marker design from VCF files and its test-use on a genotyping-by-sequencing (GBS) dataset.

Wesolowski W, Domnicz B, Augustynowicz J, Szklarczyk M PLoS Comput Biol. 2021; 17(5):e1008980.

PMID: 34014924 PMC: 8186816. DOI: 10.1371/journal.pcbi.1008980.


Omics approaches in research: Progress and way ahead.

Khandagale K, Krishna R, Roylawar P, Ade A, Benke A, Shinde B PeerJ. 2020; 8:e9824.

PMID: 32974094 PMC: 7486827. DOI: 10.7717/peerj.9824.


References
1.
Chang H, Yang C, Chang P, Cheng Y, Chuang L . SNP-RFLPing: restriction enzyme mining for SNPs in genomes. BMC Genomics. 2006; 7:30. PMC: 1386656. DOI: 10.1186/1471-2164-7-30. View

2.
Revanna R, Turnbull M, Shaw M, Wright K, Butler R, Jameson P . Measurement of the distribution of non-structural carbohydrate composition in onion populations by a high-throughput microplate enzymatic assay. J Sci Food Agric. 2013; 93(10):2470-7. DOI: 10.1002/jsfa.6062. View

3.
Prufer K, Stenzel U, Dannemann M, Green R, Lachmann M, Kelso J . PatMaN: rapid alignment of short sequences to large databases. Bioinformatics. 2008; 24(13):1530-1. PMC: 2718670. DOI: 10.1093/bioinformatics/btn223. View

4.
Shagina I, Bogdanova E, Mamedov I, Lebedev Y, Lukyanov S, Shagin D . Normalization of genomic DNA using duplex-specific nuclease. Biotechniques. 2010; 48(6):455-9. DOI: 10.2144/000113422. View

5.
Youens-Clark K, Faga B, Yap I, Stein L, Ware D . CMap 1.01: a comparative mapping application for the Internet. Bioinformatics. 2009; 25(22):3040-2. PMC: 2773250. DOI: 10.1093/bioinformatics/btp458. View