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dc.contributor.authorDemei Liuen_US
dc.contributor.authorChan Yuanen_US
dc.contributor.authorSingh, Ravi P.en_US
dc.contributor.authorRandhawa, Mandeep S.en_US
dc.contributor.authorBhavani, Sridharen_US
dc.contributor.authorKumar, Uttamen_US
dc.contributor.authorHuerta-Espino, Julioen_US
dc.contributor.authorLagudah, Evans S.en_US
dc.contributor.authorCaixia Lanen_US
dc.date.accessioned2023-03-03T16:17:26Zen_US
dc.date.available2023-03-03T16:17:26Zen_US
dc.identifier.urihttps://hdl.handle.net/10568/129175en_US
dc.titleStripe rust and leaf rust resistance in CIMMYT wheat line “Mucuy” is conferred by combinations of race-specific and adult-plant resistance locien_US
cg.authorship.typesCGIAR and advanced research instituteen_US
dcterms.abstractDeveloping wheat varieties with durable resistance is a core objective of the International Maize and Wheat Improvement Center (CIMMYT) and many other breeding programs worldwide. The CIMMYT advanced wheat line “Mucuy” displayed high levels of resistance to stripe rust (YR) and leaf rust (LR) in field evaluations in Mexico and several other countries. To determine the genetic basis of YR and LR resistance, 138 F5 recombinant inbred lines (RILs) derived from the cross of Apav#1× Mucuy were phenotyped for YR responses from 2015 to 2020 at field sites in India, Kenya, and Mexico, and LR in Mexico. Seedling phenotyping for YR and LR responses was conducted in the greenhouse in Mexico using the same predominant races as in field trials. Using 12,681 polymorphic molecular markers from the DArT, SNP, and SSR genotyping platforms, we constructed genetic linkage maps and QTL analyses that detected seven YR and four LR resistance loci. Among these, a co-located YR/LR resistance loci was identified as Yr29/Lr46, and a seedling stripe rust resistance gene YrMu was mapped on the 2AS/2NS translocation. This fragment also conferred moderate adult plant resistance (APR) under all Mexican field environments and in one season in Kenya. Field trial phenotyping with Lr37-virulent Puccinia triticina races indicated the presence of an APR QTL accounting for 18.3–25.5% of the LR severity variation, in addition to a novel YR resistance QTL, QYr.cim-3DS, derived from Mucuy. We developed breeder-friendly KASP and indel molecular markers respectively for Yr29/Lr46 and YrMu. The current study validated the presence of known genes and identified new resistance loci, a QTL combination effect, and flanking markers to facilitate accelerated breeding for genetically complex, durable rust resistance.en_US
dcterms.accessRightsOpen Accessen_US
dcterms.audienceScientistsen_US
dcterms.bibliographicCitationLiu, D., Yuan, C., Singh, R.P., Randhawa, M.S., Bhavani, S., Kumar, U., Huerta-Espino, J., Lagudah, E. and Lan, C. 2022. Stripe rust and leaf rust resistance in CIMMYT wheat line “Mucuy” is conferred by combinations of race-specific and adult-plant resistance loci. Frontiers in Plant Science, 13, 880138. https://hdl.handle.net/10883/22369.en_US
dcterms.issued2022-08-19en_US
dcterms.languageenen_US
dcterms.licenseCC-BY-4.0en_US
dcterms.publisherFrontiers Media SAen_US
dcterms.subjectrustsen_US
dcterms.subjectpuccinia striiformisen_US
dcterms.subjectquantitative trait locien_US
dcterms.subjectadult plant resistanceen_US
dcterms.subjectwheaten_US
dcterms.typeJournal Articleen_US
cg.contributor.affiliationChinese Academy of Sciencesen_US
cg.contributor.affiliationHuazhong Agricultural Universityen_US
cg.contributor.affiliationInternational Maize and Wheat Improvement Centeren_US
cg.contributor.affiliationInstituto Nacional de Investigacion Forestales Agricolas y Pecuariasen_US
cg.contributor.affiliationCommonwealth Scientific and Industrial Research Organizationen_US
cg.identifier.urlhttps://hdl.handle.net/10883/22369en_US
cg.identifier.doihttps://doi.org/10.3389/fpls.2022.880138en_US
cg.placeSwitzerlanden_US
cg.isijournalISI Journalen_US
cg.contributor.crpWheaten_US
cg.subject.impactAreaNutrition, health and food securityen_US
cg.creator.identifierRavi Prakash Singh: 0000-0002-4676-5071en_US
cg.creator.identifierMandeep Randhawa: 0000-0002-7410-6233en_US
cg.creator.identifiersridhar bhavani: 0000-0002-4091-2608en_US
cg.creator.identifierUTTAM KUMAR: 0000-0002-6618-3810en_US
cg.creator.identifierJULIO HUERTA-ESPINO: 0000-0001-8334-9862en_US
cg.contributor.donorInternational Cooperation and Exchange of the National Natural Science Foundation of Chinaen_US
cg.contributor.donorHubei Hongshan Laboratoryen_US
cg.contributor.donorChinese Academy of Sciencesen_US
cg.contributor.donorConstruction Project for Innovation Platform of Qinghai Provinceen_US
cg.contributor.donorAustralian Grains Research and Development Corporationen_US
cg.contributor.donorCGIAR Trust Funden_US
cg.reviewStatusPeer Reviewen_US
cg.howPublishedFormally Publisheden_US
cg.journalFrontiers in Plant Scienceen_US
cg.issn1664-462Xen_US
cg.subject.actionAreaGenetic Innovationen_US
cg.contributor.initiativeAccelerated Breedingen_US


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