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Molecular Ecology|August 10, 2017
Transcriptomic basis of genome by genome variation in a legume-rhizobia mutualismLiana T Burghardt, Joseph Guhlin, Chan Lan Chun, et al.Plant Physiology|November 6, 2007
Identification and characterization of nucleotide-binding site-leucine-rich repeat genes in the model plant Medicago truncatulaCarine Ameline-Torregrosa, Bing-Bing Wang, Majesta S O'Bleness, et al.Plos One|July 17, 2020
Genome-wide association study and genomic selection for tolerance of soybean biomass to soybean cyst nematode infestationWaltram Second Ravelombola, Jun Qin, Ainong Shi, et al.Genetics|May 10, 2005
Pericentromeric regions of soybean (Glycine max L. Merr.) chromosomes consist of retroelements and tandemly repeated DNA and are structurally and evolutionarily labileJer-Young Lin, Barbara Hass Jacobus, Phillip SanMiguel, et al.Genome Biology|March 20, 2008
Transcriptional analysis of highly syntenic regions between Medicago truncatula and Glycine max using tiling microarraysLei Li, Hang He, Juan Zhang, et al.Genome|April 3, 2004
Soybean bacterial artificial chromosome contigs anchored with RFLPs: insights into genome duplication and gene clusteringJoann Mudge, Yan Huihuang, Roxanne L Denny, et al.G3 (Bethesda, Md.)|April 26, 2022
Alfalfa (Medicago sativa L.) pho2 mutant plants hyperaccumulate phosphateSusan S Miller, Melinda R Dornbusch, Andrew D Farmer, et al.Plos Genetics|August 10, 2012
Population genomics of the facultatively mutualistic bacteria Sinorhizobium meliloti and S. medicaeBrendan Epstein, Antoine Branca, Joann Mudge, et al.Genome Announcements|May 5, 2018
Complete Genome Sequence of Sinorhizobium meliloti Bacteriophage HMSP1-SusanBrennon Fleagle, Aldina Imamovic, Silvia Toledo, et al.The New Phytologist|November 22, 2020
The antagonistic MYB paralogs RH1 and RH2 govern anthocyanin leaf markings in Medicago truncatulaChongnan Wang, Wenkai Ji, Yucheng Liu, et al.Pageof 7