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Journal of Natural Products|July 12, 2014
Antifungal activity of resveratrol derivatives against Candida speciesBenjamin Houillé, Nicolas Papon, Leslie Boudesocque, et al.Scientific Reports|July 20, 2018
Ranking genome-wide correlation measurements improves microarray and RNA-seq based global and targeted co-expression networksFranziska Liesecke, Dimitri Daudu, Rodolphe Dugé de Bernonville, et al.Current Genetics|May 24, 2012
A TRP5/5-fluoroanthranilic acid counter-selection system for gene disruption in Candida guilliermondiiEmilien Foureau, Marc Clastre, Yoann Millerioux, et al.Yeast (Chichester, England)|April 5, 2014
Disrupting the methionine biosynthetic pathway in Candida guilliermondii: characterization of the MET2 gene as counter-selectable markerErika J Obando Montoya, Céline Mélin, Nathalie Blanc, et al.Plant Signaling & Behavior|September 7, 2012
Triple subcellular targeting of isopentenyl diphosphate isomerases encoded by a single geneGrégory Guirimand, Anthony Guihur, Michael A Phillips, et al.Nature Communications|August 23, 2017
A three enzyme system to generate the Strychnos alkaloid scaffold from a central biosynthetic intermediateEvangelos C Tatsis, Inês Carqueijeiro, Thomas Dugé de Bernonville, et al.FEMS Yeast Research|September 14, 2016
An additional Meyerozyma guilliermondii IMH3 gene confers mycophenolic acid resistance in fungal CTG clade speciesTatiana A Defosse, Céline Mélin, Marc Clastre, et al.Journal of Biotechnology|April 9, 2014
A new series of vectors for constitutive, inducible or repressible gene expression in Candida guilliermondiiTatiana A Defosse, Céline Melin, Erika J Obando Montoya, et al.Phytochemistry|October 30, 2012
Characterization of the plastidial geraniol synthase from Madagascar periwinkle which initiates the monoterpenoid branch of the alkaloid pathway in internal phloem associated parenchymaAndrew J Simkin, Karel Miettinen, Patricia Claudel, et al.ACS Synthetic Biology|January 15, 2021
Exploiting Spermidine N-Hydroxycinnamoyltransferase Diversity and Substrate Promiscuity to Produce Various Trihydroxycinnamoyl Spermidines and Analogues in Engineered YeastJennifer Perrin, Natalja Kulagina, Marianne Unlubayir, et al.Pageof 7