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The Plant Genome|October 15, 2025
Genome-wide association study identifies quantitative trait loci associated with resistance to Verticillium dahliae race 3 in tomatoTika B Adhikari, Bode A Olukolu, Anju Pandey, et al.TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|April 4, 2021
Discovery of a major QTL for root-knot nematode (Meloidogyne incognita) resistance in cultivated sweetpotato (Ipomoea batatas)Bonny Michael Oloka, Guilherme da Silva Pereira, Victor A Amankwaah, et al.Horticulture Research|July 8, 2024
Metagenome-enabled models improve genomic predictive ability and identification of herbivory-limiting genes in sweetpotatoAlhagie K Cham, Alison K Adams, Phillip A Wadl, et al.Journal of the Science of Food and Agriculture|June 21, 2023
Development of NIRS calibration curves for sugars in baked sweetpotatoVictor A Amankwaah, Sharon Williamson, Rong Reynolds, et al.Genetics|May 7, 2020
Multiple QTL Mapping in Autopolyploids: A Random-Effect Model Approach with Application in a Hexaploid Sweetpotato Full-Sib PopulationGuilherme da Silva Pereira, Dorcus C Gemenet, Marcelo Mollinari, et al.BMC Plant Biology|January 4, 2020
Genome-wide association study identified candidate genes controlling continuous storage root formation and bulking in hexaploid sweetpotatoAstère Bararyenya, Bode A Olukolu, Phinehas Tukamuhabwa, et al.Plos Genetics|May 15, 2020
The genetic architecture of the maize progenitor, teosinte, and how it was altered during maize domesticationQiuyue Chen, Luis Fernando Samayoa, Chin Jian Yang, et al.Plos Genetics|August 29, 2014
A genome-wide association study of the maize hypersensitive defense response identifies genes that cluster in related pathwaysBode A Olukolu, Guan-Feng Wang, Vijay Vontimitta, et al.Genetics|December 11, 2012
A connected set of genes associated with programmed cell death implicated in controlling the hypersensitive response in maizeBode A Olukolu, Adisu Negeri, Rahul Dhawan, et al.Proceedings of the National Academy of Sciences of the United States of America|October 23, 2021
A conserved genetic architecture among populations of the maize progenitor, teosinte, was radically altered by domesticationQiuyue Chen, Luis Fernando Samayoa, Chin Jian Yang, et al.Pageof 4