RNA-Seq analysis and development of SSR and KASP markers in lentil (Lens culinaris Medikus subsp. culinaris)

Publication Overview
TitleRNA-Seq analysis and development of SSR and KASP markers in lentil (Lens culinaris Medikus subsp. culinaris)
AuthorsWang D, Yang T, Liu R, Li N, Wang X, Sarker A, Zhang X, Li R, Pu Y, Li G, Huang Y, Ji Y, Li Z, Tian Q, Zong X, Ding H
TypeJournal Article
Journal NameThe Crop Journal
Volume8
Year2020
Page(s)953-965
CitationWang D, Yang T, Liu R, Li N, Wang X, Sarker A, Zhang X, Li R, Pu Y, Li G, Huang Y, Ji Y, Li Z, Tian Q, Zong X, Ding H. RNA-Seq analysis and development of SSR andKASP markers in lentil (Lens culinaris Medikus subsp. culinaris). The Crop Journal. 2020; 8:953-965.

Abstract

Lentil (Lens culinarisMedikus subsp.culinaris,2n= 14) is a cool-season legume with highproduction potential for multiple uses. However, limited molecular research has beenconducted in this species owing to its large genome, which impedes the generation ofgenome sequences and the development of molecular markers. In this study, more than 1.37billion filtered clean reads were collected by RNA-Seq of six diverse lentil accessions and217,836 transcripts and 161,095 unigenes werede novoassembled, yielding respectively 257.1and 240.6 million nucleotides. The mean transcript length was 1180 bp and the N50 and N90lengths were respectively 2075 and 479 bp. The mean length of the unigenes was 1494 bp andtheir N50 and N90 values were respectively 2203 and 714 bp. The unigenes were annotatedagainst seven databases. TheFLOWERING LOCUS T(FT) gene homolog in lentil showed highprotein sequence similarity to theFTgene homologs of pea and alfalfa. On the basis of theRNA-Seq analysis, 26,449 EST-SSR markers were designedin silico, and 276 preliminarilyscreened markers were selected to evaluate polymorphism in 94 diverse lentil accessions. Intotal, 125 (45.29%) of 276 EST-SSR markers were found to be polymorphic. A total of 130,073SNP loci were detected and 78 (61.41%) of 127 SNPs were successfully converted to KASPmarkers. Population genetic analyses of the lentil accessions with EST-SSR and KASP markersrevealed similar genetic structures, suggesting that the RNA-Seq-generated resources and thedeveloped markers are reliable for use in molecular marker-assisted breeding of lentil.
Features
This publication contains information about 252 features:
Feature NameUniquenameType
SCCGR_WD_SNP101SCCGR_WD_SNP101genetic_marker
SCCGR_WD_SNP102SCCGR_WD_SNP102genetic_marker
SCCGR_WD_SNP103SCCGR_WD_SNP103genetic_marker
SCCGR_WD_SNP104SCCGR_WD_SNP104genetic_marker
SCCGR_WD_SNP105SCCGR_WD_SNP105genetic_marker
SCCGR_WD_SNP106SCCGR_WD_SNP106genetic_marker
SCCGR_WD_SNP107SCCGR_WD_SNP107genetic_marker
SCCGR_WD_SNP108SCCGR_WD_SNP108genetic_marker
SCCGR_WD_SNP109SCCGR_WD_SNP109genetic_marker
SCCGR_WD_SNP110SCCGR_WD_SNP110genetic_marker
SCCGR_WD_SNP111SCCGR_WD_SNP111genetic_marker
SCCGR_WD_SNP112SCCGR_WD_SNP112genetic_marker
SCCGR_WD_SNP113SCCGR_WD_SNP113genetic_marker
SCCGR_WD_SNP114SCCGR_WD_SNP114genetic_marker
SCCGR_WD_SNP115SCCGR_WD_SNP115genetic_marker
SCCGR_WD_SNP116SCCGR_WD_SNP116genetic_marker
SCCGR_WD_SNP117SCCGR_WD_SNP117genetic_marker
SCCGR_WD_SNP118SCCGR_WD_SNP118genetic_marker
SCCGR_WD_SNP119SCCGR_WD_SNP119genetic_marker
SCCGR_WD_SNP120SCCGR_WD_SNP120genetic_marker
SCCGR_WD_SNP121SCCGR_WD_SNP121genetic_marker
SCCGR_WD_SNP122SCCGR_WD_SNP122genetic_marker
SCCGR_WD_SNP123SCCGR_WD_SNP123genetic_marker
SCCGR_WD_SNP124SCCGR_WD_SNP124genetic_marker
SCCGR_WD_SNP125SCCGR_WD_SNP125genetic_marker

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URLhttps://www.sciencedirect.com/science/article/pii/S2214514120300763