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Publications by Scott Latimer
The Peroxidative Cleavage of Kaempferol Contributes to the Biosynthesis of the Benzenoid Moiety of Ubiquinone in Plants
Plant Cell
Plant Science
Cell Biology
Related publications
Biosynthesis of the Essential Respiratory Cofactor Ubiquinone From Phenylalanine in Plants
Molecular Plant
Plant Science
Molecular Biology
Biosynthesis of Ubiquinone in the Rat
Biochemical Journal
The Role of Trehalose Biosynthesis in Plants
Plant Physiology
Plant Science
Genetics
Physiology
Molecular Evolution of Two Consecutive Carotenoid Cleavage Dioxygenase Genes in Strigolactone Biosynthesis in Plants
Genetics and Molecular Research
Medicine
Genetics
Molecular Biology
Thiamin Biosynthesis inSaccharomyces Cerevisiae. Origin of Carbon-2 of the Thiazole Moiety
Biochemical Journal
Biochemistry
Cell Biology
Molecular Biology
Metabolic Fate of 3,4-Dichloropropionanilide in Plants: The Metabolism of the Propionic Acid Moiety
Plant Physiology
Plant Science
Genetics
Physiology
The Role of Xanthosine in the Biosynthesis of Caffeine in Coffee Plants.
Agricultural and Biological Chemistry
Alternative Splicing of COQ-2 Determines the Choice Between Ubiquinone and Rhodoquinone Biosynthesis in Helminths
Diversity of OGlycosyltransferases Contributes to the Biosynthesis of Flavonoid and Triterpenoid Glycosides in Glycyrrhiza Uralensis