Diversity Arrays Technology (DArT) Marker Platforms for Diversity Analysis and Linkage Mapping in a Complex Crop, the Octoploid Cultivated Strawberry (Fragaria × ananassa)

Publication Overview
TitleDiversity Arrays Technology (DArT) Marker Platforms for Diversity Analysis and Linkage Mapping in a Complex Crop, the Octoploid Cultivated Strawberry (Fragaria × ananassa)
AuthorsSánchez-Sevilla JF, Horvath A, Botella MA, Gaston A, Folta K, Kilian A, Denoyes B, Amaya I
TypeJournal Article
Journal NamePloS one
Volume10
Issue12
Year2015
Page(s)e0144960
CitationSánchez-Sevilla JF, Horvath A, Botella MA, Gaston A, Folta K, Kilian A, Denoyes B, Amaya I. Diversity Arrays Technology (DArT) Marker Platforms for Diversity Analysis and Linkage Mapping in a Complex Crop, the Octoploid Cultivated Strawberry (Fragaria × ananassa). PloS one. 2015; 10(12):e0144960.

Abstract

Cultivated strawberry (Fragaria × ananassa) is a genetically complex allo-octoploid crop with 28 pairs of chromosomes (2n = 8x = 56) for which a genome sequence is not yet available. The diploid Fragaria vesca is considered the donor species of one of the octoploid sub-genomes and its available genome sequence can be used as a reference for genomic studies. A wide number of strawberry cultivars are stored in ex situ germplasm collections world-wide but a number of previous studies have addressed the genetic diversity present within a limited number of these collections. Here, we report the development and application of two platforms based on the implementation of Diversity Array Technology (DArT) markers for high-throughput genotyping in strawberry. The first DArT microarray was used to evaluate the genetic diversity of 62 strawberry cultivars that represent a wide range of variation based on phenotype, geographical and temporal origin and pedigrees. A total of 603 DArT markers were used to evaluate the diversity and structure of the population and their cluster analyses revealed that these markers were highly efficient in classifying the accessions in groups based on historical, geographical and pedigree-based cues. The second DArTseq platform took benefit of the complexity reduction method optimized for strawberry and the development of next generation sequencing technologies. The strawberry DArTseq was used to generate a total of 9,386 SNP markers in the previously developed '232' × '1392' mapping population, of which, 4,242 high quality markers were further selected to saturate this map after several filtering steps. The high-throughput platforms here developed for genotyping strawberry will facilitate genome-wide characterizations of large accessions sets and complement other available options.

Features
This publication contains information about 1,798 features:
Feature NameUniquenameType
17687-20:T>A-17687-20:T>A-genetic_marker
17800-67:C>G-17800-67:C>G-genetic_marker
17806-7:C>T-17806-7:C>T-genetic_marker
17812-10:T>C-17812-10:T>C-genetic_marker
17813-24:T>G17813-24:T>Ggenetic_marker
17844-57:C>T17844-57:C>Tgenetic_marker
17949-21:C>G17949-21:C>Ggenetic_marker
17951-41:T>C17951-41:T>Cgenetic_marker
18006-38:A>G-18006-38:A>G-genetic_marker
18006-53:C>T-18006-53:C>T-genetic_marker
18375-53:A>C18375-53:A>Cgenetic_marker
18390-48:T>C18390-48:T>Cgenetic_marker
18644-32:C>T18644-32:C>Tgenetic_marker
18849-65:A>G18849-65:A>Ggenetic_marker
18868-10:A>G18868-10:A>Ggenetic_marker
18894-41:T>C-18894-41:T>C-genetic_marker
18898-64:A>T-18898-64:A>T-genetic_marker
18942-35:A>C18942-35:A>Cgenetic_marker
18970-8:G>A18970-8:G>Agenetic_marker
18971-19:C>A18971-19:C>Agenetic_marker
19115-36:T>G19115-36:T>Ggenetic_marker
19391-36:G>A19391-36:G>Agenetic_marker
19512-34:G>A19512-34:G>Agenetic_marker
19654-65:C>T19654-65:C>Tgenetic_marker
19679-61:A>G19679-61:A>Ggenetic_marker

Pages

Featuremaps
This publication contains information about 1 maps:
Map Name
Strawberry-232x1392-F1-2015
Stocks
This publication contains information about 3 stocks:
Stock NameUniquenameType
232232accession
13921392accession
232_x_1392232_x_1392population