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The Arabidopsis Book|February 4, 2012
Glucosinolate breakdown in Arabidopsis: mechanism, regulation and biological significanceUte Wittstock, Meike BurowPhytochemistry|February 15, 2011
Insect herbivore counteradaptations to the plant glucosinolate-myrosinase systemInis Winde, Ute WittstockCurrent Opinion in Plant Biology|August 16, 2002
Constitutive plant toxins and their role in defense against herbivores and pathogensUte Wittstock, Jonathan GershenzonIUBMB Life|December 19, 2007
Tipping the scales--specifier proteins in glucosinolate hydrolysisUte Wittstock, Meike BurowInsect Biochemistry and Molecular Biology|August 17, 2005
Uptake and turn-over of glucosinolates sequestered in the sawfly Athalia rosaeCaroline Müller, Ute WittstockTrends in Plant Science|June 7, 2002
Glucosinolate research in the Arabidopsis eraUte Wittstock, Barbara A HalkierPlant Biotechnology (Tokyo, Japan)|November 9, 2022
Production of benzylglucosinolate in genetically engineered carrot suspension culturesElena Kurzbach, Matthias Strieker, Ute WittstockFrontiers in Plant Science|December 19, 2019
Glucosinolate Content in Dormant and Germinating Arabidopsis thaliana Seeds Is Affected by Non-Functional Alleles of Classical Myrosinase and Nitrile-Specifier Protein GenesKathrin Meier, Markus D Ehbrecht, Ute WittstockBMC Evolutionary Biology|July 31, 2012
Evolution of specifier proteins in glucosinolate-containing plantsJennifer C Kuchernig, Meike Burow, Ute WittstockJournal of Chemical Ecology|October 25, 2006
Altered glucosinolate hydrolysis in genetically engineered Arabidopsis thaliana and its influence on the larval development of Spodoptera littoralisMeike Burow, René Müller, Jonathan Gershenzon, et al.Pageof 5