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Theobromine synthase
2354 Metabolism and Ecology of Purine Alkaloids Ana Luisa Anaya 1
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Uptake, Accumulation and Metabolism of Chemicals of Emerging Concern in Vegetables
Asian Journal of Plant Biology, 2014, Vol 2, No 1, 18-27
Comparative Functional Genomics of the SABATH Family of Methyltransferases in Plants
Methyl Salicylate As a Signaling Compound That Contributes to Forest Ecosystem Stability
Exploring the Phytochemical Landscape of the Early-Diverging Flowering Plant Amborella Trichopoda Baill
Metabolism of Alkaloids in Coffee Plants
Caffeine: a Well Known but Little Mentioned Compound in Plant Science
Biochemistry and Evolution of the Phytohormone-Methylating SABATH Methyltransferase in Plants
S41598-021-87419-0.Pdf
All Enzymes in BRENDA™ the Comprehensive Enzyme Information System
Natural Products in Chemical Biology Natural Products in Chemical Biology
Molecular Cloning and Functional Characterization of Three Distinct N-Methyltransferases Involved in the Caffeine Biosynthetic Pathway in Coffee Plants1
Springer Handbook of Enzymes
Metabolite Signatures of Diverse Camellia Sinensis Tea Populations
The Catharanthus Roseus 16-Hydroxytabersonine O-Methyltransferase Involved in Vindoline Biosynthesis
Supplementary Table 2 - in Silico Reconstruction of the Metabolic Pathways of S
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Isolation of a New Dual-Functional Caffeine Synthase Gene Encoding
Evolutionary Convergence of the Caffeine Biosynthetic Pathway in Chocolate Followed Duplication of a Constrained Ancestral Enzyme
Comparative Transcriptome Analysis of Chinary, Assamica and Cambod
Essential Region for 3-N Methylation in N-Methyltransferases Involved In
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Position Versus Substrate
Springer Handbook of Enzymes
Position Versus Substrate
Coffea Arabica L.) Quality
The Enzyme List Class 2 — Transferases
Plant Defense Responses in Opium Poppy Cell Cultures Revealed by Liquid Chromatography-Tandem Mass Spectrometry Proteomics
Functional Study of Plant SABATH Methyltransferases in the Biosynthesis of Methyl Cinnamate, Juvenile Hormone III and Methyl Gibberellins
Functional Genomics and Metabolite Profiling As Tools for Alkaloid Biosynthetic Gene Discovery