Construction of a High-Density American Cranberry (Vaccinium macrocarpon Ait.) Composite Map Using Genotyping-by-Sequencing for Multi-pedigree Linkage mapping

Publication Overview
TitleConstruction of a High-Density American Cranberry (Vaccinium macrocarpon Ait.) Composite Map Using Genotyping-by-Sequencing for Multi-pedigree Linkage mapping
AuthorsSchlautman B, Covarrubias-Pazaran G, Diaz-Garcia L, Iorizzo M, Polashock J, Grygleski E, Vorsa N, Zalapa J
TypeJournal Article
Journal NameG3 (Bethesda, Md.)
Year2017
CitationSchlautman B, Covarrubias-Pazaran G, Diaz-Garcia L, Iorizzo M, Polashock J, Grygleski E, Vorsa N, Zalapa J. Construction of a High-Density American Cranberry (Vaccinium macrocarpon Ait.) Composite Map Using Genotyping-by-Sequencing for Multi-pedigree Linkage mapping. G3 (Bethesda, Md.). 2017 Mar 01.

Abstract

The American cranberry (Vaccinium macrocarpon Ait.) is a recently domesticated, economically important, fruit crop with limited molecular resources. New genetic resources could accelerate genetic gain in cranberry through characterization of its genomic structure and by enabling molecular-assisted breeding strategies. To increase the availability of cranberry genomic resources, genotyping-by-sequencing (GBS) was used to discover and genotype thousands of single nucleotide polymorphisms (SNPs) within three inter-related cranberry full-sib populations. Additional simple sequence repeat (SSR) loci were added to the SNP datasets and used to construct bin maps for the parents of the populations, which were then merged to create the first high-density cranberry composite map containing 6073 markers (5437 SNPs and 636 SSRs) on 12 linkage groups (LGs) spanning 1124 cM. Interestingly, higher rates of recombination were observed in maternal than paternal gametes. The large number of markers in common (mean of 57.3) and the high degree of observed collinearity (mean Pair-wise Spearman Rank Correlations > 0.99) between the LGs of the parental maps demonstrates the utility of GBS in cranberry for identifying polymorphic SNP loci that are transferable between pedigrees and populations in future trait-association studies. Furthermore, the high-density of markers anchored within the component maps allowed identification of segregation distortion regions, placement of centromeres on each of the 12 LGs, and anchoring of genomic scaffolds. Collectively, the results represent an important contribution to the current understanding of cranberry genomic structure and to the availability of molecular tools for future genetic research and breeding efforts in cranberry.

Features
This publication contains information about 4,496 features:
Feature NameUniquenameType
scaffold_102343_460scaffold_102343_460genetic_marker
scaffold_102465_648scaffold_102465_648genetic_marker
scaffold_10258_1773scaffold_10258_1773genetic_marker
scaffold_10258_1783scaffold_10258_1783genetic_marker
scaffold_10261_6131scaffold_10261_6131genetic_marker
scaffold_102628_648scaffold_102628_648genetic_marker
scaffold_10266_3111scaffold_10266_3111genetic_marker
scaffold_102879_424scaffold_102879_424genetic_marker
scaffold_102935_461scaffold_102935_461genetic_marker
scaffold_102935_462scaffold_102935_462genetic_marker
scaffold_102935_478scaffold_102935_478genetic_marker
scaffold_102935_479scaffold_102935_479genetic_marker
scaffold_103001_225scaffold_103001_225genetic_marker
scaffold_103107_262scaffold_103107_262genetic_marker
scaffold_1032_10045scaffold_1032_10045genetic_marker
scaffold_103203_439scaffold_103203_439genetic_marker
scaffold_103203_440scaffold_103203_440genetic_marker
scaffold_10329_3466scaffold_10329_3466genetic_marker
scaffold_103462_45scaffold_103462_45genetic_marker
scaffold_10354_3896scaffold_10354_3896genetic_marker
scaffold_10366_7047scaffold_10366_7047genetic_marker
scaffold_103669_524scaffold_103669_524genetic_marker
scaffold_103729_118scaffold_103729_118genetic_marker
scaffold_10376_2956scaffold_10376_2956genetic_marker
scaffold_103838_294scaffold_103838_294genetic_marker

Pages

Stocks
This publication contains information about 3 stocks:
Stock NameUniquenameType
CNJ04CNJ04population
CNJ02CNJ02population
[BGx(BLxNL)]95_x_ GH1x35-F1[BGx(BLxNL)]95_x_ GH1x35-F1population
Properties
Additional details for this publication include:
Property NameValue
eISSN2160-1836
Publication Date2017 Mar 01
Journal AbbreviationG3 (Bethesda)
PIIg3.116.037556
Publication ModelPrint-Electronic
ISSN2160-1836
Elocation10.1534/g3.116.037556
DOI10.1534/g3.116.037556
CopyrightCopyright © 2017 Author et al.
LanguageEnglish
Language Abbreng
Publication TypeJournal Article
Journal CountryUnited States