The first genetic map for yellow lupin enables genetic dissection of adaptation traits in an orphan grain legume crop.

Publication Overview
TitleThe first genetic map for yellow lupin enables genetic dissection of adaptation traits in an orphan grain legume crop.
AuthorsIqbal MM, Huynh M, Udall JA, Kilian A, Adhikari KN, Berger JD, Erskine W, Nelson MN
TypeJournal Article
Journal NameBMC genetics
Volume20
Issue1
Year2019
Page(s)68
CitationIqbal MM, Huynh M, Udall JA, Kilian A, Adhikari KN, Berger JD, Erskine W, Nelson MN. The first genetic map for yellow lupin enables genetic dissection of adaptation traits in an orphan grain legume crop.. BMC genetics. 2019 Aug 14; 20(1):68.

Abstract

BACKGROUND
Yellow lupin (Lupinus luteus L.) is a promising grain legume for productive and sustainable crop rotations. It has the advantages of high tolerance to soil acidity and excellent seed quality, but its current yield potential is poor, especially in low rainfall environments. Key adaptation traits such as phenology and enhanced stress tolerance are often complex and controlled by several genes. Genomic-enabled technologies may help to improve our basic understanding of these traits and to provide selective markers in breeding. However, in yellow lupin there are very limited genomic resources to support research and no published information is available on the genetic control of adaptation traits.

RESULTS
We aimed to address these deficiencies by developing the first linkage map for yellow lupin and conducting quantitative trait locus (QTL) analysis of yield under well-watered (WW) and water-deficit (WT) conditions. Two next-generation sequencing marker approaches - genotyping-by-sequencing (GBS) and Diversity Array Technology (DArT) sequencing - were employed to genotype a recombinant inbred line (RIL) population developed from a bi-parental cross between wild and domesticated parents. A total of 2,458 filtered single nucleotide polymorphism (SNP) and presence / absence variation (PAV) markers were used to develop a genetic map comprising 40 linkage groups, the first reported for this species. A number of significant QTLs controlling total biomass and 100-seed weight under two water (WW and WD) regimes were found on linkage groups YL-03, YL-09 and YL-26 that together explained 9 and 28% of total phenotypic variability. QTLs associated with length of the reproductive phase and time to flower were found on YL-01, YL-21, YL-35 and YL-40 that together explained a total of 12 and 44% of total phenotypic variation.

CONCLUSION
These genomic resources and the QTL information offer significant potential for use in marker-assisted selection in yellow lupin.

Features
This publication contains information about 2,613 features:
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C28312062.508C28312062.508genetic_marker
C28365294.1794C28365294.1794genetic_marker
C28383571.380C28383571.380genetic_marker
C28383571.790C28383571.790genetic_marker
DArT_PAV_0002DArT_PAV_0002genetic_marker
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Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Lupin-Agronomic_traits-Iqbal-2019
Featuremaps
This publication contains information about 1 maps:
Map Name
Lupin-Wodjil/P28213-RIL
Stocks
This publication contains information about 3 stocks:
Stock NameUniquenameType
WodjilWodjilaccession
P28213P28213accession
Wodjil/P28213-RILWodjil/P28213-RILpopulation
Properties
Additional details for this publication include:
Property NameValue
Publication ModelElectronic
ISSN1471-2156
eISSN1471-2156
Publication Date2019 Aug 14
Journal AbbreviationBMC Genet.
DOI10.1186/s12863-019-0767-3
Elocation10.1186/s12863-019-0767-3
Journal CountryEngland
LanguageEnglish
Language Abbreng
Publication TypeJournal Article