Publication Overview
TitleA High-Resolution InDel (Insertion–Deletion) Markers-Anchored Consensus Genetic Map Identifies Major QTLs Governing Pod Number and Seed Yield in Chickpea
AuthorsSrivastava R, Singh M, Bajaj D, Parida S
TypeJournal Article
Journal NameFrontiers in Plant Science
Volume7
Issue1362
Year2016
Page(s)1-14
CitationSrivastava R, Singh M, Bajaj D, Parida S. A High-Resolution InDel (Insertion–Deletion) Markers-Anchored Consensus Genetic Map Identifies Major QTLs Governing Pod Number and Seed Yield in Chickpea. Frontiers in Plant Science. 2016; 7(1362):1-14.

Abstract

Development and large-scale genotyping of user-friendly informative genome/gene-derived InDel markers in natural and mapping populations is vital for accelerating genomics-assisted breeding applications of chickpea with minimal resource expenses. The present investigation employed a high-throughput whole genome next-generation resequencing strategy in low and high pod number parental accessions and homozygous individuals constituting the bulks from each of two inter-specific mapping populations [(Pusa 1103 × ILWC 46) and (Pusa 256 × ILWC 46)] to develop non-erroneous InDel markers at a genome-wide scale. Comparing these high-quality genomic sequences, 82,360 InDel markers with reference to kabuli genome and 13,891 InDel markers exhibiting differentiation between low and high pod number parental accessions and bulks of aforementioned mapping populations were developed. These informative markers were structurally and functionally annotated in diverse coding and non-coding sequence components of genome/genes of kabuli chickpea. The functional significance of regulatory and coding (frameshift and large-effect mutations) InDel markers for establishing marker-trait linkages through association/genetic mapping was apparent. The markers detected a greater amplification (97%) and intra-specific polymorphic potential (58–87%) among a diverse panel of cultivated desi, kabuli, and wild accessions even by using a simpler cost-efficient agarose gel-based assay implicating their utility in large-scale genetic analysis especially in domesticated chickpea with narrow genetic base. Two high-density inter-specific genetic linkage maps generated using aforesaid mapping populations were integrated to construct a consensus 1479 InDel markers-anchored high-resolution (inter-marker distance: 0.66 cM) genetic map for efficient molecular mapping of major QTLs governing pod number and seed yield per plant in chickpea. Utilizing these high-density genetic maps as anchors, three major genomic regions harboring each of pod number and seed yield robust QTLs (15–28% phenotypic variation explained) were identified on chromosomes 2, 4, and 6. The integration of genetic and physical maps at these QTLs mapped on chromosomes scaled-down the long major QTL intervals into high-resolution short pod number and seed yield robust QTL physical intervals (0.89–2.94 Mb) which were essentially got validated in multiple genetic backgrounds of two chickpea mapping populations. The genome-wide InDel markers including natural allelic variants and genomic loci/genes delineated at major six especially in one colocalized novel congruent robust pod number and seed yield robust QTLs mapped on a high-density consensus genetic map were found most promising in chickpea. These functionally relevant molecular tags can drive marker-assisted genetic enhancement to develop high-yielding cultivars with increased seed/pod number and yield in chickpea.
Features
This publication contains information about 49 features:
Feature NameUniquenameType
CaPOPII_1383CaPOPII_1383genetic_marker
CaPOPII_1680CaPOPII_1680genetic_marker
CaPOPII_1743CaPOPII_1743genetic_marker
CaPOPII_2424CaPOPII_2424genetic_marker
CaPOPII_2465CaPOPII_2465genetic_marker
CaPOPII_662CaPOPII_662genetic_marker
CaPOPII_673CaPOPII_673genetic_marker
CaPOPII_777CaPOPII_777genetic_marker
CaPOPII_781CaPOPII_781genetic_marker
Pod number per plantqPNB.pusa1103_Pusa256_x_ILWC46.LG2QTL
Pod number per plantqPNB.pusa1103_Pusa256_x_ILWC46.LG4QTL
Seed yield per plantqSYPL.pusa1103_Pusa256_x_ILWC46.LG2QTL
Seed yield per plantqSYPL.pusa1103_Pusa256_x_ILWC46.LG4QTL
Seed yield per plantqSYPL.pusa1103_Pusa256_x_ILWC46.LG6QTL
Pod number per plantqPNB.pusa1103_x_ILWC46.LG2QTL
Pod number per plantqPNB.pusa1103_x_ILWC46.LG4QTL
Seed yield per plantqSYPL.pusa1103_x_ILWC46.LG2QTL
Seed yield per plantqSYPL.pusa1103_x_ILWC46.LG4QTL
Seed yield per plantqSYPL.pusa1103_x_ILWC46.LG6QTL
Pod number per plantqPNB.Pusa-256_x_ILWC46.LG2QTL
Pod number per plantqPNB.Pusa-256_x_ILWC46.LG4QTL
Seed yield per plantqSYPL.Pusa-256_x_ILWC46.LG2QTL
Seed yield per plantqSYPL.Pusa-256_x_ILWC46.LG4QTL
Seed yield per plantqSYPL.Pusa-256_x_ILWC46.LG6QTL

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Chickpea-Yield-Srivastava-2016
Featuremaps
This publication contains information about 1 maps:
Map Name
Chickpea-pusa1103_Pusa256_x_ILWC46-F5
Stocks
This publication contains information about 3 stocks:
Stock NameUniquenameType
ILWC46ILWC46accession
pusa1103_x_ILWC46-F5pusa1103_x_ILWC46-F5population
Pusa-256_x_ILWC46-F5Pusa-256_x_ILWC46-F5population
Properties
Additional details for this publication include:
Property NameValue
DOI10.3389/fpls.2016.01362
URLhttps://www.ncbi.nlm.nih.gov/pmc/articles/PMC5025440/