Golden rice: introducing the β-carotene biosynthesis pathway into rice endosperm by genetic engineering to defeat vitamin A deficiency P Beyer, S Al-Babili, X Ye, P Lucca, P Schaub, R Welsch, I Potrykus The Journal of nutrition 132 (3), 506S-510S, 2002 | 623 | 2002 |
Provitamin A Accumulation in Cassava (Manihot esculenta) Roots Driven by a Single Nucleotide Polymorphism in a Phytoene Synthase Gene R Welsch, J Arango, C Bär, B Salazar, S Al-Babili, J Beltran, ... The Plant Cell 22 (10), 3348-3356, 2010 | 335 | 2010 |
A third phytoene synthase is devoted to abiotic stress-induced abscisic acid formation in rice and defines functional diversification of phytoene synthase genes R Welsch, F Wust, C Bar, S Al-Babili, P Beyer Plant Physiology 147 (1), 367-380, 2008 | 319 | 2008 |
Metabolic engineering of potato tuber carotenoids through tuber-specific silencing of lycopene epsilon cyclase G Diretto, R Tavazza, R Welsch, D Pizzichini, F Mourgues, V Papacchioli, ... BMC plant biology 6, 1-11, 2006 | 319 | 2006 |
Light‐dependent regulation of carotenoid biosynthesis occurs at the level of phytoene synthase expression and is mediated by phytochrome in Sinapis alba and Arabidopsis … J Von Lintig, R Welsch, M Bonk, G Giuliano, A Batschauer, H Kleinig The Plant Journal 12 (3), 625-634, 1997 | 295 | 1997 |
Transcription factor RAP2. 2 and its interacting partner SINAT2: stable elements in the carotenogenesis of Arabidopsis leaves R Welsch, D Maass, T Voegel, D DellaPenna, P Beyer Plant Physiology 145 (3), 1073-1085, 2007 | 293 | 2007 |
Arabidopsis OR proteins are the major posttranscriptional regulators of phytoene synthase in controlling carotenoid biosynthesis X Zhou, R Welsch, Y Yang, D Álvarez, M Riediger, H Yuan, T Fish, J Liu, ... Proceedings of the National Academy of Sciences 112 (11), 3558-3563, 2015 | 284 | 2015 |
Carotenoid crystal formation in Arabidopsis and carrot roots caused by increased phytoene synthase protein levels D Maass, J Arango, F Wüst, P Beyer, R Welsch PloS one 4 (7), e6373, 2009 | 277 | 2009 |
Regulation and activation of phytoene synthase, a key enzyme in carotenoid biosynthesis, during photomorphogenesis R Welsch, P Beyer, P Hugueney, H Kleinig, J von Lintig Planta 211, 846-854, 2000 | 258 | 2000 |
Silencing of beta-carotene hydroxylase increases total carotenoid and beta-carotene levels in potato tubers G Diretto, R Welsch, R Tavazza, F Mourgues, D Pizzichini, P Beyer, ... BMC Plant Biology 7, 1-8, 2007 | 198 | 2007 |
The Or gene enhances carotenoid accumulation and stability during post-harvest storage of potato tubers L Li, Y Yang, Q Xu, K Owsiany, R Welsch, C Chitchumroonchokchai, S Lu, ... Molecular plant 5 (2), 339-352, 2012 | 158 | 2012 |
Arabidopsis GERANYLGERANYL DIPHOSPHATE SYNTHASE 11 is a hub isozyme required for the production of most photosynthesis‐related isoprenoids MÁ Ruiz‐Sola, D Coman, G Beck, MV Barja, M Colinas, A Graf, R Welsch, ... New Phytologist 209 (1), 252-264, 2016 | 148 | 2016 |
Identification of a novel gene coding for neoxanthin synthase from Solanum tuberosum S Al-Babili, P Hugueney, M Schledz, R Welsch, H Frohnmeyer, O Laule, ... FEBS letters 485 (2-3), 168-172, 2000 | 148 | 2000 |
Structural and functional characterization of the phytoene synthase promoter from Arabidopsis thaliana R Welsch, J Medina, G Giuliano, P Beyer, J Von Lintig Planta 216 (3), 523-534, 2003 | 141 | 2003 |
Carotene hydroxylase activity determines the levels of both α-carotene and total carotenoids in orange carrots J Arango, M Jourdan, E Geoffriau, P Beyer, R Welsch The Plant Cell 26 (5), 2223-2233, 2014 | 136 | 2014 |
Distinct mechanisms of the ORANGE protein in controlling carotenoid flux N Chayut, H Yuan, S Ohali, A Meir, U Sa’ar, G Tzuri, Y Zheng, ... Plant Physiology 173 (1), 376-389, 2017 | 123 | 2017 |
Clp protease and OR directly control the proteostasis of phytoene synthase, the crucial enzyme for carotenoid biosynthesis in Arabidopsis R Welsch, X Zhou, H Yuan, D Álvarez, T Sun, D Schlossarek, Y Yang, ... Molecular Plant 11 (1), 149-162, 2018 | 119 | 2018 |
Characterization of phytoene synthases from cassava and their involvement in abiotic stress-mediated responses J Arango, F Wüst, P Beyer, R Welsch Planta 232, 1251-1262, 2010 | 105 | 2010 |
A single amino acid substitution in an ORANGE protein promotes carotenoid overaccumulation in Arabidopsis H Yuan, K Owsiany, TE Sheeja, X Zhou, C Rodriguez, Y Li, R Welsch, ... Plant Physiology 169 (1), 421-431, 2015 | 102 | 2015 |
Tissue-specific apocarotenoid glycosylation contributes to carotenoid homeostasis in Arabidopsis leaves K Lätari, F Wüst, M Hübner, P Schaub, KG Beisel, S Matsubara, P Beyer, ... Plant physiology 168 (4), 1550-1562, 2015 | 96 | 2015 |