Hinrichsen P. Construction of high density sweet cherry (Prunus avium L.) linkage maps using microsatellite markers and SNPs detected by genotyping-by-sequencing (GBS).

Publication Overview
TitleConstruction of high density sweet cherry (Prunus avium L.) linkage maps using microsatellite markers and SNPs detected by genotyping-by-sequencing (GBS).
AuthorsGuajardo V, Solís S, Sagredo B, Gainza F, Muñoz C, Gasic K, Hinrichsen P. Construction of high density sweet cherry (Prunus avium L.) linkage maps using microsatellite markers and SNPs detected by genotyping-by-sequencing (GBS). PLoS ONE 2015.
TypeJournal Article
Journal NamePLoS ONE
Volume10
Issue5
Year2015
Page(s)e0127750
CitationGuajardo V, Solís S, Sagredo B, Gainza F, Muñoz C, Gasic K, Hinrichsen P. Construction of high density sweet cherry (Prunus avium L.) linkage maps using microsatellite markers and SNPs detected by genotyping-by-sequencing (GBS). PLoS ONE 2015.

Abstract

Linkage maps are valuable tools in genetic and genomic studies. For sweet cherry, linkage maps have been constructed using mainly microsatellite markers (SSRs) and, recently, using single nucleotide polymorphism markers (SNPs) from a cherry 6K SNP array. Genotyping-by-sequencing (GBS), a new methodology based on high-throughput sequencing, holds great promise for identification of high number of SNPs and construction of high density linkage maps. In this study, GBS was used to identify SNPs from an intra-specific sweet cherry cross. A total of 8,476 high quality SNPs were selected for mapping. The physical position for each SNP was determined using the peach genome, Peach v1.0, as reference, and a homogeneous distribution of markers along the eight peach scaffolds was obtained. On average, 65.6% of the SNPs were present in genic regions and 49.8% were located in exonic regions. In addition to the SNPs, a group of SSRs was also used for construction of linkage maps. Parental and consensus high density maps were constructed by genotyping 166 siblings from a 'Rainier' x 'Rivedel' (Ra x Ri) cross. Using Ra x Ri population, 462, 489 and 985 markers were mapped into eight linkage groups in 'Rainier', 'Rivedel' and the Ra x Ri map, respectively, with 80% of mapped SNPs located in genic regions. Obtained maps spanned 549.5, 582.6 and 731.3 cM for 'Rainier', 'Rivedel' and consensus maps, respectively, with an average distance of 1.2 cM between adjacent markers for both 'Rainier' and 'Rivedel' maps and of 0.7 cM for Ra x Ri map. High synteny and co-linearity was observed between obtained maps and with Peach v1.0. These new high density linkage maps provide valuable information on the sweet cherry genome, and serve as the basis for identification of QTLs and genes relevant for the breeding of the species.
Features
This publication contains information about 8,477 features:
Feature NameUniquenameType
s2_476729s2_476729genetic_marker
s2_476730s2_476730genetic_marker
s2_671050s2_671050genetic_marker
s2_671061s2_671061genetic_marker
s2_721989s2_721989genetic_marker
s2_742386s2_742386genetic_marker
s2_745516s2_745516genetic_marker
s2_746293s2_746293genetic_marker
s2_746301s2_746301genetic_marker
s2_902480s2_902480genetic_marker
s2_940943s2_940943genetic_marker
s2_1022783s2_1022783genetic_marker
s2_1036906s2_1036906genetic_marker
s2_1036908s2_1036908genetic_marker
s2_1036914s2_1036914genetic_marker
s2_1036929s2_1036929genetic_marker
s2_1036958s2_1036958genetic_marker
s2_1117465s2_1117465genetic_marker
s2_1171146s2_1171146genetic_marker
s2_1171159s2_1171159genetic_marker
s2_1365220s2_1365220genetic_marker
s2_1406061s2_1406061genetic_marker
s2_1406063s2_1406063genetic_marker
s2_1406106s2_1406106genetic_marker
s2_1406107s2_1406107genetic_marker

Pages

Featuremaps
This publication contains information about 4 maps:
Map Name
Sweet Cherry-Ra-F1
Sweet Cherry-Ri-F1
Sweet Cherry-RaxRi-F1
Sweet_cherry_RaxRi_F1-physical-Prunus-persicaV1.0