The development of a high-density genetic map significantly improves the quality of reference genome assemblies for rose

Publication Overview
TitleThe development of a high-density genetic map significantly improves the quality of reference genome assemblies for rose
AuthorsLi S, Yang G, Yang S, Just J, Yan H, Zhou N, Jian H, Wang Q, Chen M, Qiu X, Zhang H, Dong X, Jiang X, Sun Y, Zhong M, Bendahmane M, Ning G, Ge H, Hu JY, Tang K
TypeJournal Article
Journal NameScientific reports
Volume9
Issue1
Year2019
Page(s)5985
CitationLi S, Yang G, Yang S, Just J, Yan H, Zhou N, Jian H, Wang Q, Chen M, Qiu X, Zhang H, Dong X, Jiang X, Sun Y, Zhong M, Bendahmane M, Ning G, Ge H, Hu JY, Tang K. The development of a high-density genetic map significantly improves the quality of reference genome assemblies for rose. Scientific reports. 2019 Apr 12; 9(1):5985.

Abstract

Roses are important woody plants featuring a set of important traits that cannot be investigated in traditional model plants. Here, we used the restriction-site associated DNA sequencing (RAD-seq) technology to develop a high-density linkage map of the backcross progeny (BC1F1) between Rosa chinensis 'Old Blush' (OB) and R. wichuraiana 'Basyes' Thornless' (BT). We obtained 643.63 million pair-end reads and identified 139,834 polymorphic tags that were distributed uniformly in the rose genome. 2,213 reliable markers were assigned to seven linkage groups (LGs). The length of the genetic map was 1,027.425 cM in total with a mean distance of 0.96 cM per marker locus. This new linkage map allowed anchoring an extra of 1.21/23.14 Mb (12.18/44.52%) of the unassembled OB scaffolds to the seven reference pseudo-chromosomes, thus significantly improved the quality of assembly of OB reference genome. We demonstrate that, while this new linkage map shares high collinearity level with strawberry genome, it also features two chromosomal rearrangements, indicating its usefulness as a resource for understanding the evolutionary scenario among Rosaceae genomes. Together with the newly released genome sequences for OB, this linkage map will facilitate the identification of genetic components underpinning key agricultural and biological traits, hence should greatly advance the studies and breeding efforts of rose.

Features
This publication contains information about 2,213 features:
Feature NameUniquenameType
Rosa_SNP.234989Rosa_SNP.234989genetic_marker
Rosa_SNP.245840Rosa_SNP.245840genetic_marker
Rosa_SNP.234990Rosa_SNP.234990genetic_marker
Rosa_SNP.6620Rosa_SNP.6620genetic_marker
Rosa_SNP.224032Rosa_SNP.224032genetic_marker
Rosa_SNP.60497Rosa_SNP.60497genetic_marker
Rosa_SNP.278654Rosa_SNP.278654genetic_marker
Rosa_SNP.257214Rosa_SNP.257214genetic_marker
Rosa_SNP.190079Rosa_SNP.190079genetic_marker
Rosa_SNP.225560Rosa_SNP.225560genetic_marker
Rosa_SNP.295775Rosa_SNP.295775genetic_marker
Rosa_SNP.270808Rosa_SNP.270808genetic_marker
Rosa_SNP.128888Rosa_SNP.128888genetic_marker
Rosa_SNP.289905Rosa_SNP.289905genetic_marker
Rosa_SNP.123667Rosa_SNP.123667genetic_marker
Rosa_SNP.226781Rosa_SNP.226781genetic_marker
Rosa_SNP.40661Rosa_SNP.40661genetic_marker
Rosa_SNP.121632Rosa_SNP.121632genetic_marker
Rosa_SNP.90004Rosa_SNP.90004genetic_marker
Rosa_SNP.43882Rosa_SNP.43882genetic_marker
Rosa_SNP.127523Rosa_SNP.127523genetic_marker
Rosa_SNP.33126Rosa_SNP.33126genetic_marker
Rosa_SNP.123192Rosa_SNP.123192genetic_marker
Rosa_SNP.147716Rosa_SNP.147716genetic_marker
Rosa_SNP.118146Rosa_SNP.118146genetic_marker

Pages

Featuremaps
This publication contains information about 1 maps:
Map Name
Rose-Old_Blush_x_Basyes_Thornless-BC1F1
Stocks
This publication contains information about 2 stocks:
Stock NameUniquenameType
Basyes' ThornlessBasyes' Thornlessaccession
Old_Blush_x_Basyes_Thornless-BC1F1Old_Blush_x_Basyes_Thornless-BC1F1population