Please use this identifier to cite or link to this item: http://localhost:80/xmlui/handle/123456789/14027
Title: QTL MAPPING OF WHEAT DOUBLED HAPLOIDS FOR CHLOROPHYLL CONTENT AND CHLOROPHYLL FLUORESCENCE KINETICS UNDER DROUGHT STRESS IMPOSED AT ANTHESIS STAGE
Authors: ILYAS, MEHMOONA
ILYAS, NOSHIN
ARSHAD, MUHAMMAD
GUL KAZI, ALVINA
MUJEEB KAZI, ABDUL
WAHEED, ABDUL
Keywords: QTL mapping
Wheat
Chlorophyll
Stress
Haploids
Issue Date: 15-Nov-2014
Publisher: Karachi: Pakistan Journal of Botany, Botanical Garden, University of Karachi
Citation: Ilyas, M., Ilyas, N., Arshad, M., Kazi, A. G., Kazi, A. M., & Waheed, A. (2014). QTL mapping of wheat doubled haploids for chlorophyll content and chlorophyll fluorescence kinetics under drought stress imposed at anthesis stage. Pak. J. Bot, 46(5), 1889-1897.
Abstract: Drought stress is one of the major environmental constraints to crop plants including wheat worldwide. Synthetic hexaploid can act as a vehicle for improving crop tolerance against biotic and abiotic stresses. Doubled haploid population consisting of one hundred and forty individuals derived from cross of Opata and SH223 was used in the present study to identify genomic regions associated with various quantitative attributes of physiological nature. Doubled haploid mapping population was phenotyped for chlorophyll content and chlorophyll fluorescence kinetics under control and drought stress imposed at anthesis stage. Genotyping of population was accomplished by utilizing two hundred and sixty one polymorphic Gaterslaben wheat microsatellites and Beltsville agriculture research center simple sequence repeats. Linkage map of doubled haploid population comprising of 19 linkage groups and covering map length of two thousands six hundred and twenty six (2626) cM was constructed using map maker software. Major and minor QTLs associated with quantitative traits were identified using QGene software. Major QTL for chlorophyll content (QTc.wwc-1B-S11) of doubled haploid mapping population under anthesis drought stress was mapped on chromosome 1B and explained 10.09 percent of phenotypic variation at LOD score of 5.5. Seven major and minor QTLs for PCFK of doubled haploids were identified on chromosome 1B, 7A and 7D under control and drought stress at anthesis stage. The identified QTLs are of prime importance for high resolution mapping in synthetic hexaploid wheat. Genomic synteny of doubled haploids was observed with rice chromosome 2, 4, 7 and maize chromosome 7 owing to occurrence of orthologous QTLs for chlorophyll content and chlorophyll fluorescence respectively.
URI: http://142.54.178.187:9060/xmlui/handle/123456789/14027
ISSN: 2070-3368
Appears in Collections:Issue 05

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