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Plant Physiology|September 12, 2014
Elucidating the role of transport processes in leaf glucosinolate distributionSvend Roesen Madsen, Carl Erik Olsen, Hussam Hassan Nour-Eldin, et al.Plant Physiology|March 30, 2010
A complex interplay of three R2R3 MYB transcription factors determines the profile of aliphatic glucosinolates in ArabidopsisIda Elken Sønderby, Meike Burow, Heather C Rowe, et al.Proceedings of the National Academy of Sciences of the United States of America|November 19, 2021
Herbivore feeding preference corroborates optimal defense theory for specialized metabolites within plantsPascal Hunziker, Sophie Konstanze Lambertz, Konrad Weber, et al.Planta|April 2, 2002
Composition and content of glucosinolates in developing Arabidopsis thalianaBent Larsen Petersen, Sixue Chen, Carsten Hørslev Hansen, et al.Bioscience Reports|June 9, 2019
Changing substrate specificity and iteration of amino acid chain elongation in glucosinolate biosynthesis through targeted mutagenesis of <i>Arabidopsis</i> methylthioalkylmalate synthase 1Annette Petersen, Lea Gram Hansen, Nadia Mirza, et al.Plant Physiology|September 19, 2008
Subclade of flavin-monooxygenases involved in aliphatic glucosinolate biosynthesisJing Li, Bjarne Gram Hansen, James A Ober, et al.Plant, Cell & Environment|April 11, 2020
De novo indol-3-ylmethyl glucosinolate biosynthesis, and not long-distance transport, contributes to defence of Arabidopsis against powdery mildewPascal Hunziker, Hassan Ghareeb, Lena Wagenknecht, et al.The Plant Cell|February 15, 2011
Metabolic engineering in Nicotiana benthamiana reveals key enzyme functions in Arabidopsis indole glucosinolate modificationMarina Pfalz, Michael Dalgaard Mikkelsen, Pawel Bednarek, et al.Applied and Environmental Microbiology|November 3, 2022
Comparison of Genome and Plasmid-Based Engineering of Multigene Benzylglucosinolate Pathway in Saccharomyces cerevisiaeCuiwei Wang, Michal Poborsky, Christoph Crocoll, et al.Frontiers in Plant Science|July 3, 2020
In <i>Arabidopsis thaliana</i> Substrate Recognition and Tissue- as Well as Plastid Type-Specific Expression Define the Roles of Distinct Small Subunits of Isopropylmalate IsomeraseKurt Lächler, Karen Clauss, Janet Imhof, et al.Pageof 8