Publication Overview
TitleGenetic dissection of photosynthetic efficiency traits for enhancing seed yield in chickpea
AuthorsBasu U, Baja D, Sharma A, Malik N, Daware A, Narnoliya L, Thakro V, Upadhyaya H, Kumar R, Tripathi S, Bharadwaj C, Tyagi A, Parida S
TypeJournal Article
Journal NamePlant, Cell and Environment
Issue42
Year2019
Page(s)158-173
CitationBasu U, Baja D, Sharma A, Malik N, Daware A, Narnoliya L, Thakro V, Upadhyaya H, Kumar R, Tripathi S, Bharadwaj C, Tyagi A, Parida S. Genetic dissection of photosynthetic efficiency traits for enhancing seed yield in chickpea. Plant, Cell and Environment. 2019; (42)158-173.

Abstract

Understanding the genetic basis of photosynthetic efficiency (PE) contributing to enhanced seed yield per plant (SYP) is vital for genomics‐assisted crop improvement of chickpea. The current study employed an integrated genomic strategy involving photosynthesis pathway gene‐based association mapping, genome‐wide association study, quantitative trait loci (QTL) mapping, and expression profiling. This identified 16 potential single nucleotide polymorphism loci linked to major QTLs underlying 16 candidate genes significantly associated with PE and SYP traits in chickpea. The allelic variants were tightly linked to positively interacting QTLs regulating both enhanced PE and SYP traits as exemplified by a chlorophyll A‐B binding protein‐coding gene. The leaf tissue‐specific pronounced up‐regulated expression of 16 associated genes in germplasm accessions and homozygous individuals of mapping population was evident. Such combinatorial genomic strategy coupled with gene haplotype‐specific association and in silico protein–protein interaction study delineated natural alleles and superior haplotypes from a chlorophyll A‐B binding (CAB) protein‐coding gene and its interacting gene, Timing of CAB Expression 1 (TOC1), which appear to be most promising candidates in modulating chickpea PE and SYP traits. These functionally pertinent molecular signatures identified have efficacy to drive marker‐assisted selection for developing PE‐enriched cultivars with high seed yield in chickpea.
Features
This publication contains information about 598 features:
Feature NameUniquenameType
CakSNP13998CakSNP13998genetic_marker
CakSNP14001CakSNP14001genetic_marker
CakSNP14002CakSNP14002genetic_marker
CakSNP14009CakSNP14009genetic_marker
CakSNP14010CakSNP14010genetic_marker
CakSNP14012CakSNP14012genetic_marker
CakSNP14040CakSNP14040genetic_marker
CakSNP15524CakSNP15524genetic_marker
CakSNP15679CakSNP15679genetic_marker
CakSNP15881CakSNP15881genetic_marker
Scaffold89204367Scaffold89204367genetic_marker
Ca78419380Ca78419380genetic_marker
Photosynthetic efficiencyqPSE.ICC4958/ICC12299.LG1QTL
Photosynthetic efficiencyqPSE.ICC4958/ICC12299.LG1.2QTL
Photosynthetic efficiencyqPSE.ICC4958/ICC12299.LG2QTL
Photosynthetic efficiencyqPSE.ICC4958/ICC12299.LG2.2QTL
Seed yield per plantqSYPL.ICC4958/ICC12299.LG2QTL
Photosynthetic efficiencyqPSE.ICC4958/ICC12299.LG4QTL
Photosynthetic efficiencyqPSE.ICC4958/ICC12299.LG5QTL
Photosynthetic efficiencyqPSE.ICC4958/ICC12299.LG6QTL
Photosynthetic efficiencyqPSE.ICC4958/ICC12299.LG6.2QTL
Photosynthetic efficiencyqPSE.ICC4958/ICC12299.LG7QTL
Seed yield per plantqSYPL.ICC4958/ICC12299.LG7QTL

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Chickpea-Photosynthesis-Basu-2018
Featuremaps
This publication contains information about 1 maps:
Map Name
Chickpea-ICC4958/ICC12299-RIL
Stocks
This publication contains information about 1 stocks:
Stock NameUniquenameType
ICC4958_x_ICC12299-RILICC4958_x_ICC12299-RILpopulation
Properties
Additional details for this publication include:
Property NameValue
URLhttps://onlinelibrary.wiley.com/doi/full/10.1111/pce.13319