Metabolic engineering for the production of plant isoquinoline alkaloids
Author:
Affiliation:
1. Department of Chemistry, Biochemistry and Physics; University of Québec at Trois-Rivières; Trois-Rivières QC Canada
2. Groupe de recherche en biologie végétale; University of Québec at Trois-Rivières; Trois-Rivières QC Canada
Funder
Natural Sciences and Engineering Research Council of Canada
Publisher
Wiley
Subject
Plant Science,Agronomy and Crop Science,Biotechnology
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/pbi.12494/fullpdf
Reference78 articles.
1. RNAi-mediated replacement of morphine with the nonnarcotic alkaloid reticuline in opium poppy;Allen;Nat. Biotechnol.,2004
2. Metabolic engineering of morphinan alkaloids by over-expression and RNAi suppression of salutaridinol 7-O-acetyltransferase in opium poppy;Allen;Plant Biotechnol. J.,2008
3. Metabolic flux analysis in plants: coping with complexity;Allen;Plant, Cell Environ.,2009
4. Enhancement of alkaloid production in opium and California poppy by transactivation using heterologous regulatory factors;Apuya;Plant Biotechnol. J.,2008
5. Synthetic studies on amaryllidaceae and other terrestrially derived alkaloids;Banwell;Top. Curr. Chem.,2012
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