Genome-wide mapping uncovers significant quantitative trait loci associated with yam mosaic virus infection, yield and dry matter content in White Guinea yam (Dioscorea rotundata Poir.)

dc.contributor.authorAdjei Emmanuel Amponsah
dc.contributor.authorLapaka Odong Thomas
dc.contributor.authorEsuma Williams
dc.contributor.authorRanjana Bhattacharjee
dc.contributor.authorPaterne Angelot Agre
dc.contributor.authorOlusanmi Adebola Patrick
dc.contributor.authorBoache Chamba Emmanuel
dc.contributor.authorAsrat Asfaw
dc.contributor.authorOnziga Dramadri Isaac
dc.contributor.authorTusiime Mbabazi Sharon
dc.contributor.authorEdema Richard
dc.contributor.authorAdebo Ozimati Alfred
dc.contributor.authorOchwo-Ssemakula Mildred
dc.contributor.authorAlicai Titus
dc.date.accessioned2026-03-04T12:39:33Z
dc.date.issued2024-10-04
dc.description.abstractIntroduction: Yam is an important crop for food security in East and West Africa due to its high market value and customer demand. High tuber quality with yield and disease resistance are the main traits for acceptability of yam cultivars across the tropical zone. There has been limited progress in enhancing the production and quality traits of yams, despite the significant socio-economic significance of this crop. Method: To expedite the development of high-quality yam cultivars in Uganda, traits association study was conducted to identify genomic regions associated with key traits such as disease resistance, high yields, and dry matter content. The association mapping was conducted with multi-random mixed linear model (mrMLM) to compute the associations using five genetic models. Results: A total of 16 significant single nucleotide polymorphisms (SNPs) markers were identified to be associated with the traits studied. Gene identification analysis revealed the presence of key putative genes such as Vicilin-like seed storage protein At2g28490 (ARATH)and Growth-regulating factor 1 involved in a variety of functions ranging from storage and gene regulation for disease resistance. Discussion: The results obtained from this work have significant implications for the in-depth analysis of the genetic structure underlying key traits in yam. Additionally, this study emphasizes the identification of SNP variants and genes that may be utilized for genomic-informed selection in order to enhance yield and disease resistance in yams.
dc.description.sponsorshipBill and Melinda gate foundation project through African yam project of the international Institute of Tropical Agriculture (IITA) (OPP1052998), World Bank project through Makerere Regional Center for Crop Improvement, Makerere University (MaRCCI) (Grant: IDA Credit No. 57970 UG), the European Union-funded academic mobility project—Scientists in Crop Improvement for Security in Africa (SCIFSA), post-doctoral funding [RU/2022/R1/03] through the Regional Universities Forum for Capacity Building in Agriculture (RUFORUM) and kind support from individuals in the National Agricultural Research Resource Institute, Uganda and Savanna Agriculture Research Institute, Tamale - Ghana.
dc.identifier.citationAdjei EA, Odong TL, Esuma W, Bhattacharjee R, Agre PA, Adebola PO, Chamba EB, Asfaw A, Dramadri IO, Mbabazi ST, Edema R, Ozimati AA, Ochwo-Ssemakula M and Alicai T (2024) Genome-wide mapping uncovers significant quantitative trait loci associated with yam mosaic virus infection, yield and dry matter content in White Guinea yam (Dioscorea rotundata Poir.). Front. Hortic. 3:1365567. doi: 10.3389/fhort.2024.1365567
dc.identifier.other10.3389/fhort.2024.1365567
dc.identifier.urihttps://researchspace.naro.go.ug/handle/123456789/313
dc.language.isoen
dc.publisherFrontiers in Horticulture
dc.subjectDioscorea rotundata
dc.subjectUganda
dc.subjectDArTseq
dc.subjectmarker-trait association
dc.subjectgene annotation
dc.subjectmapping
dc.titleGenome-wide mapping uncovers significant quantitative trait loci associated with yam mosaic virus infection, yield and dry matter content in White Guinea yam (Dioscorea rotundata Poir.)
dc.typeArticle

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