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dc.contributor.authorBadji, Arfangen_US
dc.contributor.authorKwemoi, Daniel Bometen_US
dc.contributor.authorMachida, Lewisen_US
dc.contributor.authorOkii, Dennisen_US
dc.contributor.authorMwila, Natashaen_US
dc.contributor.authorAgbahoungba, Symphorienen_US
dc.contributor.authorKumi, Franken_US
dc.contributor.authorIbanda, Angeleen_US
dc.contributor.authorBararyenya, Astereen_US
dc.contributor.authorSolemanegy, Martaen_US
dc.contributor.authorOdong , Thomasen_US
dc.contributor.authorWasswa, Peteren_US
dc.contributor.authorOtim, Michaelen_US
dc.contributor.authorAsea, Godfreyen_US
dc.contributor.authorOchwo-Ssemakula, Mildreden_US
dc.contributor.authorTalwana, Herbert A.L.en_US
dc.contributor.authorKyamanywa, Samuelen_US
dc.contributor.authorRubaihayo, Patricken_US
dc.date.accessioned2021-01-11T08:49:27Zen_US
dc.date.available2021-01-11T08:49:27Zen_US
dc.identifier.urihttps://hdl.handle.net/10568/110812en_US
dc.titleGenetic basis of maize resistance to multiple insect pests: integrated genome-wide comparative mapping and candidate gene prioritizationen_US
cg.authorship.typesCGIAR and advanced research instituteen_US
dcterms.abstractSeveral species of herbivores feed on maize in field and storage setups, making the development of multiple insect resistance a critical breeding target. In this study, an association mapping panel of 341 tropical maize lines was evaluated in three field environments for resistance to fall armyworm (FAW), whilst bulked grains were subjected to a maize weevil (MW) bioassay and genotyped with Diversity Array Technology’s single nucleotide polymorphisms (SNPs) markers. A multi-locus genome-wide association study (GWAS) revealed 62 quantitative trait nucleotides (QTNs) associated with FAW and MW resistance traits on all 10 maize chromosomes, of which, 47 and 31 were discovered at stringent Bonferroni genome-wide significance levels of 0.05 and 0.01, respectively, and located within or close to multiple insect resistance genomic regions (MIRGRs) concerning FAW, SB, and MW. Sixteen QTNs influenced multiple traits, of which, six were associated with resistance to both FAWandMW, suggesting a pleiotropic genetic control. Functional prioritization of candidate genes (CGs) located within 10–30 kb of the QTNs revealed 64 putative GWAS-based CGs (GbCGs) showing evidence of involvement in plant defense mechanisms. Only one GbCG was associated with each of the five of the six combined resistance QTNs, thus reinforcing the pleiotropy hypothesis. In addition, through in silico co-functional network inferences, an additional 107 network-based CGs (NbCGs), biologically connected to the 64 GbCGs, and di erentially expressed under biotic or abiotic stress, were revealed within MIRGRs. The provided multiple insect resistance physical map should contribute to the development of combined insect resistance in maize.en_US
dcterms.accessRightsOpen Accessen_US
dcterms.audienceScientistsen_US
dcterms.available2020-06-24en_US
dcterms.bibliographicCitationBadji, A.; Kwemoi, D.; Bomet; Machida, L.; Okii, D.; Mwila, N.; Agbahoungba, S.; Kumi, F.; Ibanda, A.; Bararyenya, A.; Solemanegy, M.; Odong , T.; Wasswa, P.; Otim, M.; Asea, G.; Ochwo-Ssemakula, M.; Talwana, H.; Kyamanywa, S.; Rubaihayo, P. (2020) Genetic basis of maize resistance to multiple insect pests: integrated genome-wide comparative mapping and candidate gene prioritization. Genes 11(6) p. 689 ISSN: 2073-4425en_US
dcterms.extentp. 689en_US
dcterms.issued2020-12en_US
dcterms.languageenen_US
dcterms.licenseCC-BY-4.0en_US
dcterms.publisherMDPI AGen_US
dcterms.subjectpest insectsen_US
dcterms.subjectgenomesen_US
dcterms.subjectpest resistanceen_US
dcterms.subjectcontrol methodsen_US
dcterms.subjectiinsectos dañinosen_US
dcterms.subjectgenomasen_US
dcterms.subjectresistencia a las plagasen_US
dcterms.typeJournal Articleen_US
cg.contributor.affiliationMakerere Universityen_US
cg.contributor.affiliationNational Crops Resources Research Institute, Ugandaen_US
cg.contributor.affiliationBioversity Internationalen_US
cg.contributor.affiliationUniversité d'Abomey-Calavien_US
cg.contributor.affiliationUniversity of Cape Coasten_US
cg.identifier.doihttps://doi.org/10.3390/genes11060689en_US
cg.isijournalISI Journalen_US
cg.contributor.crpMaizeen_US
cg.subject.alliancebiovciatAGRICULTUREen_US
cg.creator.identifierLewis Machida: 0000-0002-0012-3997en_US
cg.contributor.donorCarnegie Corporation of New Yorken_US
cg.reviewStatusPeer Reviewen_US
cg.journalGenesen_US
cg.issn2073-4425en_US
cg.volume11en_US
cg.issue6en_US


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