Quantitative Trait Loci for Cold Tolerance in Chickpea

Publication Overview
TitleQuantitative Trait Loci for Cold Tolerance in Chickpea
AuthorsMugabe D, Coyne CJ, Piaskowski J, Zheng P, Ma Y, Landry E, McGee R, Main D, Vandemark G, Zhang H, Abbo S
TypeJournal Article
Journal NameCrop Science
Issue59
Year2019
Page(s)573-582
CitationMugabe D, Coyne CJ, Piaskowski J, Zheng P, Ma Y, Landry E, McGee R, Main D, Vandemark G, Zhang H, Abbo S. Quantitative Trait Loci for Cold Tolerance in Chickpea. Crop Science. 2019; (59)573-582.

Abstract

Fall-sown chickpea (Cicer arietinum L.) yields are often double those of spring-sown chickpea in regions with Mediterranean climates that have mild winters. However, winter kill can limit the productivity of fall-sown chickpea. Developing cold-tolerant chickpea would allow the expansion of the current geographic range where chickpea is grown and also improve productivity. The objective of this study was to identify the quantitative trait loci (QTL) associated with cold tolerance in chickpea. An interspecific recombinant inbred line population of 129 lines derived from a cross between ICC 4958, a cold-sensitive desi type (C. arietinum), and PI 489777, a coldtolerant wild relative (C. reticulatum Ladiz), was used in this study. The population was phenotyped for cold tolerance in the field over four field seasons (September 2011–March 2015) and under controlled conditions two times. The population was genotyped using genotypingby- sequencing, and an interspecific genetic linkage map consisting of 747 single nucleotide polymorphism (SNP) markers, spanning a distance of 393.7 cM, was developed. Three significant QTL were found on linkage groups (LGs) 1B, 3, and 8. The QTL on LGs 3 and 8 were consistently detected in six environments with logarithm of odds score ranges of 5.16 to 15.11 and 5.68 to 23.96, respectively. The QTL CT Ca-3.1 explained 7.15 to 34.6% of the phenotypic variance in all environments, whereas QTL CT Ca-8.1 explained 11.5 to 48.4%. The QTLassociated SNP markers may become useful for breeding with further fine mapping for increasing cold tolerance in domestic chickpea.
Features
This publication contains information about 764 features:
Feature NameUniquenameType
7525_67525_6genetic_marker
7539_67539_6genetic_marker
755_1755_1genetic_marker
7552_67552_6genetic_marker
7562_67562_6genetic_marker
7565_67565_6genetic_marker
7591_67591_6genetic_marker
7594_67594_6genetic_marker
7611_67611_6genetic_marker
7620_67620_6genetic_marker
7624_67624_6genetic_marker
7627_67627_6genetic_marker
7651_67651_6genetic_marker
7654_67654_6genetic_marker
7662_67662_6genetic_marker
767_1767_1genetic_marker
7676_67676_6genetic_marker
7681_67681_6genetic_marker
7693_67693_6genetic_marker
7698_67698_6genetic_marker
7704_67704_6genetic_marker
7713_67713_6genetic_marker
7714_67714_6genetic_marker
7719_67719_6genetic_marker
7731_67731_6genetic_marker

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Chickpea-Cold_tolerance-Mugabe-2019
Featuremaps
This publication contains information about 1 maps:
Map Name
Chickpea-ICC4958xPI489777-RIL-CRIL2
Stocks
This publication contains information about 1 stocks:
Stock NameUniquenameType
ICC4958_x_PI489777-RIL-F10ICC4958_x_PI489777-RIL-F10population
Properties
Additional details for this publication include:
Property NameValue
URLhttps://dl.sciencesocieties.org/publications/cs/abstracts/59/2/573?search-result=1