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Phytochemistry|February 25, 2006
Diterpene resin acid biosynthesis in loblolly pine (Pinus taeda): functional characterization of abietadiene/levopimaradiene synthase (PtTPS-LAS) cDNA and subcellular targeting of PtTPS-LAS and abietadienol/abietadienal oxidase (PtAO, CYP720B1)Dae-Kyun Ro, Jörg BohlmannThe Journal of Biological Chemistry|November 11, 2003
Reconstitution of the entry point of plant phenylpropanoid metabolism in yeast (Saccharomyces cerevisiae): implications for control of metabolic flux into the phenylpropanoid pathwayDae-Kyun Ro, Carl J DouglasPhytochemistry|January 3, 2015
Silencing the lettuce homologs of small rubber particle protein does not influence natural rubber biosynthesis in lettuce (Lactuca sativa)Romit Chakrabarty, Yang Qu, Dae-Kyun RoBiochemical and Biophysical Research Communications|June 29, 2017
Functional identification of a Lippia dulcis bornyl diphosphate synthase that contains a duplicated, inhibitory arginine-rich motifMatthew C Hurd, Moonhyuk Kwon, Dae-Kyun RoPlant Physiology|December 14, 2002
Cloning, functional expression, and subcellular localization of multiple NADPH-cytochrome P450 reductases from hybrid poplarDae-Kyun Ro, Jürgen Ehlting, Carl J DouglasMethods in Enzymology|October 23, 2012
De novo synthesis of high-value plant sesquiterpenoids in yeastTrinh-Don Nguyen, Gillian MacNevin, Dae-Kyun RoArchives of Biochemistry and Biophysics|August 8, 2012
Molecular cloning and characterization of (+)-epi-α-bisabolol synthase, catalyzing the first step in the biosynthesis of the natural sweetener, hernandulcin, in Lippia dulcisMohamed Attia, Soo-Un Kim, Dae-Kyun RoFrontiers in Plant Science|August 23, 2021
Multiplex Genome Editing in Yeast by CRISPR/Cas9 - A Potent and Agile Tool to Reconstruct Complex Metabolic PathwaysJoseph Christian Utomo, Connor Lorne Hodgins, Dae-Kyun RoPlos One|May 25, 2012
Response of sunflower (Helianthus annuus L.) leaf surface defenses to exogenous methyl jasmonateHeather C Rowe, Dae-kyun Ro, Loren H RiesebergApplied Biological Chemistry|April 11, 2022
Piperonal synthase from black pepper (<i>Piper nigrum</i>) synthesizes a phenolic aroma compound, piperonal, as a CoA-independent catalysisZhehao Jin, Dae-Kyun Ro, Soo-Un Kim, et al.Pageof 6