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Molecular Plant-Microbe Interactions : MPMI|December 23, 2021
Bradyrhizobium japonicum IRAT FA3 Alters Arabidopsis thaliana Root Architecture via Regulation of Auxin Efflux Transporters PIN2, PIN3, PIN7, and ABCB19Mercedes M Schroeder, Melissa Y Gomez, Nathan McLain, et al.Plos One|January 5, 2011
A new and unified nomenclature for male fertility restorer (RF) proteins in higher plantsSimeon O Kotchoni, Jose C Jimenez-Lopez, Emma W Gachomo, et al.BMC Structural Biology|December 31, 2010
The maize ALDH protein superfamily: linking structural features to functional specificitiesJose C Jimenez-Lopez, Emma W Gachomo, Manfredo J Seufferheld, et al.BMC Plant Biology|January 29, 2014
GIGANTUS1 (GTS1), a member of Transducin/WD40 protein superfamily, controls seed germination, growth and biomass accumulation through ribosome-biogenesis protein interactions in Arabidopsis thalianaEmma W Gachomo, Jose C Jimenez-Lopez, Lyla Jno Baptiste, et al.BMC Plant Biology|August 28, 2014
The Arabidopsis CURVY1 (CVY1) gene encoding a novel receptor-like protein kinase regulates cell morphogenesis, flowering time and seed productionEmma W Gachomo, Lyla Jno Baptiste, Timnit Kefela, et al.BMC Plant Biology|January 29, 2023
Bradyrhizobium japonicum IRAT FA3 promotes salt tolerance through jasmonic acid priming in Arabidopsis thalianaMelissa Y Gomez, Mercedes M Schroeder, Maha Chieb, et al.Molecular Biology Reports|May 21, 2011
Specific conformational epitope features of pathogenesis-related proteins mediating cross-reactivity between pollen and food allergensJose C Jimenez-Lopez, Emma W Gachomo, Oluwole A Ariyo, et al.Molecular Biology Reports|May 8, 2014
Biochemical characterization and growth patterns of new yeast isolatesKadjogbé Y Djegui, Emma W Gachomo, Djidjoho J Hounhouigan, et al.Molecular Biology Reports|September 28, 2011
Structural characterization of plant defensin protein superfamilyEmma W Gachomo, Jose C Jimenez-Lopez, Adéchola Pierre Polycarpe Kayodé, et al.Journal of Computer-Aided Molecular Design|October 25, 2013
Structural functionality, catalytic mechanism modeling and molecular allergenicity of phenylcoumaran benzylic ether reductase, an olive pollen (Ole e 12) allergenJose C Jimenez-Lopez, Simeon O Kotchoni, Maria C Hernandez-Soriano, et al.Pageof 3