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Journal of Experimental Botany|March 15, 2011
Functional characterization of various algal carotenoid ketolases reveals that ketolating zeaxanthin efficiently is essential for high production of astaxanthin in transgenic ArabidopsisYu-Juan Zhong, Jun-Chao Huang, Jin Liu, et al.Transgenic Research|February 3, 2012
Functional characterization of the Gentiana lutea zeaxanthin epoxidase (GlZEP) promoter in transgenic tomato plantsQingjie Yang, Dawei Yuan, Lianxuan Shi, et al.Transgenic Research|March 12, 2010
Cloning and functional characterization of the maize carotenoid isomerase and β-carotene hydroxylase genes and their regulation during endosperm maturationQunrui Li, Gemma Farre, Shaista Naqvi, et al.Plos One|June 2, 2015
Cloning and Functional Characterization of the Maize (Zea mays L.) Carotenoid Epsilon Hydroxylase GeneShu Chang, Judit Berman, Yanmin Sheng, et al.Yeast (Chichester, England)|July 16, 2010
Heterologous carotenoid production in Saccharomyces cerevisiae induces the pleiotropic drug resistance stress responseRené Verwaal, Yang Jiang, Jing Wang, et al.ACS Synthetic Biology|May 7, 2019
Expanding the Isoprenoid Building Block Repertoire with an IPP Methyltransferase from Streptomyces monomyciniLaura Drummond, Max J Kschowak, Jürgen Breitenbach, et al.Transgenic Research|August 14, 2016
Engineered maize as a source of astaxanthin: processing and application as fish feedJürgen Breitenbach, Marilise Nogueira, Gemma Farré, et al.Chembiochem : a European Journal of Chemical Biology|December 3, 2015
Aryl Polyenes, a Highly Abundant Class of Bacterial Natural Products, Are Functionally Related to Antioxidative CarotenoidsTim A Schöner, Sören Gassel, Ayako Osawa, et al.Journal of Experimental Botany|May 25, 2016
The wheat Phs-A1 pre-harvest sprouting resistance locus delays the rate of seed dormancy loss and maps 0.3 cM distal to the PM19 genes in UK germplasmOluwaseyi Shorinola, Nicholas Bird, James Simmonds, et al.Applied and Environmental Microbiology|May 15, 2007
High-level production of beta-carotene in Saccharomyces cerevisiae by successive transformation with carotenogenic genes from Xanthophyllomyces dendrorhousRené Verwaal, Jing Wang, Jean-Paul Meijnen, et al.Pageof 12