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BMC Evolutionary Biology|July 31, 2012
Evolution of specifier proteins in glucosinolate-containing plantsJennifer C Kuchernig, Meike Burow, Ute Wittstock
Phytochemistry|July 26, 2011
A thiocyanate-forming protein generates multiple products upon allylglucosinolate breakdown in Thlaspi arvenseJennifer-C Kuchernig, Anita Backenköhler, Maike Lübbecke, et al.
The Arabidopsis Book|February 4, 2012
Glucosinolate breakdown in Arabidopsis: mechanism, regulation and biological significanceUte Wittstock, Meike Burow
IUBMB Life|December 19, 2007
Tipping the scales--specifier proteins in glucosinolate hydrolysisUte Wittstock, Meike Burow
Journal 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.
Plant Molecular Biology|December 2, 2006
Glucosinolate hydrolysis in Lepidium sativum--identification of the thiocyanate-forming proteinMeike Burow, Andrea Bergner, Jonathan Gershenzon, et al.
Plant Molecular Biology|March 29, 2007
Cell- and tissue-specific localization and regulation of the epithiospecifier protein in Arabidopsis thalianaMeike Burow, Margaret Rice, Bettina Hause, et al.
Plant Physiology|November 7, 2008
The genetic basis of constitutive and herbivore-induced ESP-independent nitrile formation in ArabidopsisMeike Burow, Anja Losansky, René Müller, et al.
Journal of Chemical Ecology|September 13, 2008
Formation of simple nitriles upon glucosinolate hydrolysis affects direct and indirect defense against the specialist herbivore, Pieris rapaeRoland Mumm, Meike Burow, Gabriella Bukovinszkine'kiss, et al.
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