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Biorxiv : the Preprint Server for Biology|April 8, 2025
Biosynthesis and Physiological Significance of Organ-Specific Flavonol Glycosides in SolanaceaeDoosan Shin, Haohao Zhao, Ethan Tucker, et al.Plant Physiology|November 1, 2025
Tomato pollen tube growth requires flavonol glycosylationDoosan Shin, Haohao Zhao, Ethan Tucker, et al.The Plant Cell|November 16, 2018
The Peroxidative Cleavage of Kaempferol Contributes to the Biosynthesis of the Benzenoid Moiety of Ubiquinone in PlantsEric Soubeyrand, Timothy S Johnson, Scott Latimer, et al.Photosynthesis Research|November 12, 2025
Quinol C-methyltransferases from extant species of early cyanobacterial lineages shed light on the emergence of plastoquinone in oxygenic phototrophsGabriella Dickinson, Lauren R Stutts, Scott Latimer, et al.The Biochemical Journal|November 6, 2019
Arabidopsis 4-COUMAROYL-COA LIGASE 8 contributes to the biosynthesis of the benzenoid ring of coenzyme Q in peroxisomesEric Soubeyrand, Megan Kelly, Shea A Keene, et al.Phytochemistry|March 23, 2021
3-O-glycosylation of kaempferol restricts the supply of the benzenoid precursor of ubiquinone (Coenzyme Q) in Arabidopsis thalianaEric Soubeyrand, Scott Latimer, Ann C Bernert, et al.The Journal of Biological Chemistry|October 9, 2021
A dedicated flavin-dependent monooxygenase catalyzes the hydroxylation of demethoxyubiquinone into ubiquinone (coenzyme Q) in ArabidopsisScott Latimer, Shea A Keene, Lauren R Stutts, et al.Pageof 2