The seco-iridoid pathway from Catharanthus roseus K Miettinen, L Dong, N Navrot, T Schneider, V Burlat, J Pollier, L Woittiez, ... Nature communications 5 (1), 3606, 2014 | 466 | 2014 |
An alternative route to cyclic terpenes by reductive cyclization in iridoid biosynthesis F Geu-Flores, NH Sherden, V Courdavault, V Burlat, WS Glenn, C Wu, ... Nature 492 (7427), 138-142, 2012 | 373 | 2012 |
Roles of cell wall peroxidases in plant development E Francoz, P Ranocha, H Nguyen-Kim, E Jamet, V Burlat, C Dunand Phytochemistry 112, 15-21, 2015 | 297 | 2015 |
Regiochemical control of monolignol radical coupling: a new paradigm for lignin and lignan biosynthesis DR Gang, MA Costa, M Fujita, AT Dinkova-Kostova, HB Wang, V Burlat, ... Chemistry & Biology 6 (3), 143-151, 1999 | 267 | 1999 |
Co‐expression of three MEP pathway genes and geraniol 10‐hydroxylase in internal phloem parenchyma of Catharanthus roseus implicates multicellular … V Burlat, A Oudin, M Courtois, M Rideau, B St‐Pierre The Plant Journal 38 (1), 131-141, 2004 | 265 | 2004 |
Down-regulation of the AtCCR1 gene in Arabidopsis thaliana: effects on phenotype, lignins and cell wall degradability T Goujon, V Ferret, I Mila, B Pollet, K Ruel, V Burlat, JP Joseleau, ... Planta 217, 218-228, 2003 | 247 | 2003 |
De novo biosynthesis of defense root exudates in response to Fusarium attack in barley A Lanoue, V Burlat, GJ Henkes, I Koch, U Schurr, USR Röse New Phytologist 185 (2), 577-588, 2010 | 236 | 2010 |
Dirigent proteins and dirigent sites in lignifying tissues V Burlat, M Kwon, LB Davin, NG Lewis Phytochemistry 57 (6), 883-897, 2001 | 226 | 2001 |
Strictosidine activation in Apocynaceae: towards a" nuclear time bomb"? G Guirimand, V Courdavault, A Lanoue, S Mahroug, A Guihur, N Blanc, ... BMC Plant Biology 10, 1-20, 2010 | 165 | 2010 |
Characterization of the plastidial geraniol synthase from Madagascar periwinkle which initiates the monoterpenoid branch of the alkaloid pathway in internal phloem associated … AJ Simkin, K Miettinen, P Claudel, V Burlat, G Guirimand, V Courdavault, ... Phytochemistry 85, 36-43, 2013 | 161 | 2013 |
Spatial distribution and hormonal regulation of gene products from methyl erythritol phosphate and monoterpene-secoiridoid pathways in Catharanthus roseus A Oudin, S Mahroug, V Courdavault, N Hervouet, C Zelwer, ... Plant Molecular Biology 65, 13-30, 2007 | 131 | 2007 |
A look inside an alkaloid multisite plant: the Catharanthus logistics V Courdavault, N Papon, M Clastre, N Giglioli-Guivarc’h, B St-Pierre, ... Current Opinion in Plant Biology 19, 43-50, 2014 | 128 | 2014 |
A Pair of Tabersonine 16-Hydroxylases Initiates the Synthesis of Vindoline in an Organ-Dependent Manner in Catharanthus roseus S Besseau, F Kellner, A Lanoue, AMK Thamm, V Salim, B Schneider, ... Plant physiology 163 (4), 1792-1803, 2013 | 126 | 2013 |
Optimization of the transient transformation of Catharanthus roseus cells by particle bombardment and its application to the subcellular localization of … G Guirimand, V Burlat, A Oudin, A Lanoue, B St-Pierre, V Courdavault Plant cell reports 28, 1215-1234, 2009 | 116 | 2009 |
Arabidopsis seed mucilage secretory cells: regulation and dynamics E Francoz, P Ranocha, V Burlat, C Dunand Trends in plant science 20 (8), 515-524, 2015 | 108 | 2015 |
Epidermis is a pivotal site of at least four secondary metabolic pathways in Catharanthus roseus aerial organs S Mahroug, V Courdavault, M Thiersault, B St-Pierre, V Burlat Planta 223, 1191-1200, 2006 | 103 | 2006 |
Spatial organization of the vindoline biosynthetic pathway in Catharanthus roseus G Guirimand, A Guihur, P Poutrain, F Héricourt, S Mahroug, B St-Pierre, ... Journal of plant physiology 168 (6), 549-557, 2011 | 101 | 2011 |
Phytochemical genomics of the Madagascar periwinkle: unravelling the last twists of the alkaloid engine TD de Bernonville, M Clastre, S Besseau, A Oudin, V Burlat, G Glévarec, ... Phytochemistry 113, 9-23, 2015 | 95 | 2015 |
Cellular and sub-cellular organisation of the monoterpenoid indole alkaloid pathway in Catharanthus roseus S Mahroug, V Burlat, B St-Pierre Phytochemistry Reviews 6, 363-381, 2007 | 95 | 2007 |
The class III peroxidase PRX 17 is a direct target of the MADS‐box transcription factor AGAMOUS‐LIKE15 (AGL 15) and participates in lignified tissue formation C Cosio, P Ranocha, E Francoz, V Burlat, Y Zheng, SE Perry, JJ Ripoll, ... New Phytologist 213 (1), 250-263, 2017 | 87 | 2017 |