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The Plant Cell|November 24, 2012
Genome-wide characterization of nonreference transposons reveals evolutionary propensities of transposons in soybeanZhixi Tian, Meixia Zhao, Maoyun She, et al.Plant Physiology|March 3, 2009
Identification and analyses of candidate genes for rpp4-mediated resistance to Asian soybean rust in soybeanJenelle D F Meyer, Danielle C G Silva, Chunling Yang, et al.BMC Genomics|September 21, 2007
Gene duplication and paleopolyploidy in soybean and the implications for whole genome sequencingJessica A Schlueter, Jer-Young Lin, Shannon D Schlueter, et al.Nucleic Acids Research|December 2, 2020
A new decade and new data at SoyBase, the USDA-ARS soybean genetics and genomics databaseAnne V Brown, Shawn I Conners, Wei Huang, et al.Planta|October 16, 2008
Establishment of a soybean (Glycine max Merr. L) transposon-based mutagenesis repositoryMelanie Mathieu, Elizabeth K Winters, Fanming Kong, et al.Plant Physiology|July 27, 2010
An integrative approach to genomic introgression mappingAndrew J Severin, Gregory A Peiffer, Wayne W Xu, et al.Molecular Plant-Microbe Interactions : MPMI|December 7, 2007
Genetic dissection of resistance to anthracnose and powdery mildew in Medicago truncatulaCarine Ameline-Torregrosa, Marc Cazaux, Dariush Danesh, et al.The Plant Journal : for Cell and Molecular Biology|December 24, 2025
A single hybrid origin of cultivated peanutFrancisco J de Blas, Soraya C M Leal-Bertioli, José G Seijo, et al.Genetics|January 24, 2026
The SoyBase, LegumeInfo, and PeanutBase databases in support of legume research and crop improvementJacqueline D Campbell, Connor T Cameron, Alan M Cleary, et al.Frontiers in Plant Science|February 13, 2023
Initiation of genomics-assisted breeding in Virginia-type peanuts through the generation of a de novo reference genome and informative markersCassondra S Newman, Ryan J Andres, Ramey C Youngblood, et al.Pageof 13