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dc.contributor.authorSaid, Alaa A.en_US
dc.contributor.authorMacQueen, Alice H.en_US
dc.contributor.authorShawky, Haithamen_US
dc.contributor.authorReynolds, Matthew P.en_US
dc.contributor.authorJuenger, Thomas E.en_US
dc.contributor.authorEl-Soda, Mohameden_US
dc.date.accessioned2023-02-26T17:35:24Zen_US
dc.date.available2023-02-26T17:35:24Zen_US
dc.identifier.urihttps://hdl.handle.net/10568/129060en_US
dc.titleGenome-wide association mapping of genotype-environment interactions affecting yield-related traits of spring wheat grown in three watering regimesen_US
cg.authorship.typesCGIAR and developing country instituteen_US
dcterms.abstractGenotype-environment interaction (GxE) has a great impact on wheat physiology, morphology and grain yield (GY). We evaluated an association mapping panel of spring wheat advanced lines for chlorophyll content, canopy temperature (CT), and yield-related traits under three different watering regimes in two consecutive growing seasons. Genome-wide association mapping identified 457 SNPs, with significant effects that varied with the watering regimes and growing seasons, of which 199 and 69 SNPs showed pleiotropic and conditionally neutral effects, respectively, on the measured traits. We mapped 61 SNPs with effects higher than 10% on all traits, showing antagonistic pleiotropic effects on CT, corresponding to 46 genes; some of these genes represent good candidates to control wheat response to water availability. Surprisingly, no significant SNPs were mapped in the semi-dwarfing genes, Rht-B1b or Rht-D1b. However, haplotype analysis of the SNPs located at the positions of both genes revealed significant interactions of GY with the watering regimes for Rht-B1b and with the growing season for Rht-D1b. We selected genotypes that outperformed two local check cultivars; some of them overlapped across the three watering regimes and could be used to create a multi-parent population to further unravel the genetic factors underlying yield component traits across drought stress. Our results demonstrate the importance of incorporating GxE in mapping models to better understand wheat response to different watering regimes and to select stable markers for selection.en_US
dcterms.accessRightsOpen Accessen_US
dcterms.audienceCGIARen_US
dcterms.audienceDonorsen_US
dcterms.available2021-11-27en_US
dcterms.bibliographicCitationSaid, A.A., MacQueen, A.H., Shawky, H., Reynolds, M., Juenger, T.E. and El-Soda, M. 2022. Ge-nome-wide association mapping of genotype-environment interactions affecting yield-related traits of spring wheat grown in three watering regimes. Environmental and Experimental Botany 194:104740. https://hdl.handle.net/10883/21748en_US
dcterms.issued2022-02-15en_US
dcterms.languageenen_US
dcterms.licenseCC-BY-NC-ND-4.0en_US
dcterms.publisherElsevier BVen_US
dcterms.subjectcanopyen_US
dcterms.subjectchlorophyllsen_US
dcterms.subjectdroughten_US
dcterms.subjectgenotype environment interactionen_US
dcterms.subjectgrainen_US
dcterms.subjectspring wheaten_US
dcterms.subjectyield componentsen_US
dcterms.typeJournal Articleen_US
cg.contributor.affiliationSohag Universityen_US
cg.contributor.affiliationUniversity of Texasen_US
cg.contributor.affiliationNational Research Centre, Egypten_US
cg.contributor.affiliationInternational Maize and Wheat Improvement Centeren_US
cg.contributor.affiliationCairo Universityen_US
cg.identifier.urlhttps://hdl.handle.net/10883/21748en_US
cg.identifier.doihttps://doi.org/10.1016/j.envexpbot.2021.104740en_US
cg.placeNetherlandsen_US
cg.isijournalISI Journalen_US
cg.subject.impactAreaNutrition, health and food securityen_US
cg.creator.identifierMatthew Paul Reynolds: 0000-0002-4291-4316en_US
cg.contributor.donorScience, Technology and Innovation Funding Authority, Egypten_US
cg.contributor.donorCGIAR Trust Funden_US
cg.reviewStatusPeer Reviewen_US
cg.howPublishedFormally Publisheden_US
cg.journalEnvironmental and Experimental Botanyen_US
cg.issn0098-8472en_US
cg.subject.actionAreaGenetic Innovationen_US
cg.contributor.initiativeAccelerated Breedingen_US


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