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Phytochemistry|October 23, 2010
Gibberellin 3-oxidases in developing embryos of the southern wild cucumber, Marah macrocarpusDennis A Ward, Jake MacMillan, Fan Gong, et al.Journal of Experimental Botany|July 14, 2012
Genetic and physiological analysis of Rht8 in bread wheat: an alternative source of semi-dwarfism with a reduced sensitivity to brassinosteroidsDebora Gasperini, Andy Greenland, Peter Hedden, et al.The Plant Cell|September 2, 2008
The cold-inducible CBF1 factor-dependent signaling pathway modulates the accumulation of the growth-repressing DELLA proteins via its effect on gibberellin metabolismPatrick Achard, Fan Gong, Soizic Cheminant, et al.BMC Genomics|March 21, 2012
A new RNASeq-based reference transcriptome for sugar beet and its application in transcriptome-scale analysis of vernalization and gibberellin responsesEffie S Mutasa-Göttgens, Anagha Joshi, Helen F Holmes, et al.The Journal of Biological Chemistry|March 24, 2004
The NADPH-cytochrome P450 reductase gene from Gibberella fujikuroi is essential for gibberellin biosynthesisStefan Malonek, Maria C Rojas, Peter Hedden, et al.Phytochemistry|January 1, 2014
Gibberellin oxidase activities in Bradyrhizobium japonicum bacteroidsConstanza Méndez, Cecilia Baginsky, Peter Hedden, et al.Phytochemistry|April 15, 2004
Kaurenolides and fujenoic acids are side products of the gibberellin P450-1 monooxygenase in Gibberella fujikuroiM Cecilia Rojas, Oriana Urrutia, Carlos Cruz, et al.The Journal of Biological Chemistry|May 17, 2003
Characterization of the final two genes of the gibberellin biosynthesis gene cluster of Gibberella fujikuroi: des and P450-3 encode GA4 desaturase and the 13-hydroxylase, respectivelyBettina Tudzynski, Martina Mihlan, Maria Cecilia Rojas, et al.Transgenic Research|August 13, 2008
Modification of gibberellin signalling (metabolism & signal transduction) in sugar beet: analysis of potential targets for crop improvementEffie Mutasa-Gottgens, Aiming Qi, Ann Mathews, et al.Journal of Experimental Botany|July 29, 2006
Overexpression of a bacterial 1-deoxy-D-xylulose 5-phosphate synthase gene in potato tubers perturbs the isoprenoid metabolic network: implications for the control of the tuber life cycleWayne L Morris, Laurence J M Ducreux, Peter Hedden, et al.Pageof 8