Genetic and comparative mapping of Lupinus luteus L. highlight syntenic regions with major orthologous genes controlling anthracnose resistance and flowering time.

Publication Overview
TitleGenetic and comparative mapping of Lupinus luteus L. highlight syntenic regions with major orthologous genes controlling anthracnose resistance and flowering time.
AuthorsLichtin N, Salvo-Garrido H, Till B, Caligari PDS, Rupayan A, Westermeyer F, Olivos M
TypeJournal Article
Journal NameScientific reports
Volume10
Issue1
Year2020
Page(s)19174
CitationLichtin N, Salvo-Garrido H, Till B, Caligari PDS, Rupayan A, Westermeyer F, Olivos M. Genetic and comparative mapping of Lupinus luteus L. highlight syntenic regions with major orthologous genes controlling anthracnose resistance and flowering time.. Scientific reports. 2020 Nov 05; 10(1):19174.

Abstract

Anthracnose susceptibility and ill-adapted flowering time severely affect Lupinus luteus yield, which has high seed protein content, is excellent for sustainable agriculture, but requires genetic improvement to fulfil its potential. This study aimed to (1) develop a genetic map; (2) define collinearity and regions of synteny with Lupinus angustifolius; and (3) map QTLs/candidate genes for anthracnose resistant and flowering time. A few linkage groups/genomic regions tended to be associated with segregation distortion, but did not affect the map. The developed map showed collinearity, and syntenic regions with L. angustifolius. Major QTLs were mapped in syntenic regions. Alleles from the wild parent and cultivar, explained 75% of the phenotypic variance for anthracnose resistance and 83% for early flowering, respectively. Marker sequences flanking the QTLs showed high homology with the Lanr1 gene and Flowering-locus-T of L. angustifolius. This suggests orthologous genes for both traits in the L. luteus genome. The findings are remarkable, revealing the potential to combine early flowering/anthracnose resistant in fulfilling yield capacity in L. luteus, and can be a major strategy in the genetic improvement and usage of this species for sustainable protein production. Allele sequences and PCR-marker tagging of these genes are being applied in marker assisted selection.

Features
This publication contains information about 753 features:
Feature NameUniquenameType
Days to first flowerqDFFL.AluProtCGNA/Core98.LG23.F2QTL
Days to first flowerqDFFL.AluProtCGNA/Core98.LG23.F2.2QTL
Days to first flowerqDFFL.AluProtCGNA/Core98.LG23.F2:3QTL

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Lupin-Anthracnose_resistance-Lichtin-2020
Featuremaps
This publication contains information about 1 maps:
Map Name
Lupin-AluProtCGNA/Core98-F2
Stocks
This publication contains information about 4 stocks:
Stock NameUniquenameType
AluProt-CGNAAluProt-CGNAaccession
Core 98Core 98accession
AluProtCGNA/Core98-F2AluProtCGNA/Core98-F2population
AluProtCGNA/Core98-F2:3AluProtCGNA/Core98-F2:3population
Properties
Additional details for this publication include:
Property NameValue
Publication ModelElectronic
ISSN2045-2322
eISSN2045-2322
Publication Date2020 Nov 05
Journal AbbreviationSci Rep
DOI10.1038/s41598-020-76197-w
Elocation10.1038/s41598-020-76197-w
LanguageEnglish
Language Abbreng
Publication TypeJournal Article
Journal CountryEngland