@prefix rdf: . @prefix rdfs: . @prefix bibo: . @prefix cito: . @prefix dc: . @prefix dwc: . @prefix dwcFP: . @prefix fabio: . @prefix trt: . @prefix xlink: . cito:cites ; dc:creator "Agerbirk, Niels; Hansen, Cecilie Cetti; Kiefer, Christiane; Hauser, Thure P.; Ørgaard, Marian; Lange, Conny Bruun Asmussen; Cipollini, Don; Koch, Marcus A." ; dc:title "Cardamineae" ; trt:publishedIn ; trt:treatsTaxonName ; a trt:Treatment . bibo:endPage "26" ; bibo:journal "Phytochemistry" ; bibo:pubDate "2021-05-31" ; bibo:series "112668" ; bibo:startPage "1" ; bibo:volume "185" ; dc:creator "Agerbirk, Niels; Hansen, Cecilie Cetti; Kiefer, Christiane; Hauser, Thure P.; Ørgaard, Marian; Lange, Conny Bruun Asmussen; Cipollini, Don; Koch, Marcus A." ; dc:date "2021" ; dc:title "Comparison of glucosinolate diversity in the crucifer tribe Cardamineae and the remaining order Brassicales highlights repetitive evolutionary loss and gain of biosynthetic steps" ; fabio:hasPart ; a fabio:JournalArticle . dwc:class "Magnoliopsida" ; dwc:family "Brassicaceae" ; dwc:kingdom "Plantae" ; dwc:order "Brassicales" ; dwc:phylum "Tracheophyta" ; dwc:rank "tribe" ; dwc:tribe "Cardamineae" ; trt:hasParentName ; a dwcFP:TaxonName . dwc:class "Magnoliopsida" ; dwc:family "Brassicaceae" ; dwc:kingdom "Plantae" ; dwc:order "Brassicales" ; dwc:phylum "Tracheophyta" ; dwc:rank "family" ; trt:hasParentName ; a dwcFP:TaxonName . dwc:class "Magnoliopsida" ; dwc:kingdom "Plantae" ; dwc:order "Brassicales" ; dwc:phylum "Tracheophyta" ; dwc:rank "order" ; trt:hasParentName ; a dwcFP:TaxonName . dwc:class "Magnoliopsida" ; dwc:kingdom "Plantae" ; dwc:phylum "Tracheophyta" ; dwc:rank "class" ; trt:hasParentName ; a dwcFP:TaxonName . dwc:kingdom "Plantae" ; dwc:phylum "Tracheophyta" ; dwc:rank "phylum" ; trt:hasParentName ; a dwcFP:TaxonName . dwc:kingdom "Plantae" ; dwc:rank "kingdom" ; a dwcFP:TaxonName . dc:description "Fig. 1. An archetypic glucosinolate-myrosinase system, leading to an isothiocyanate (A) and an oxazolidine-2-thione (B) from myrosinase-catalyzed hydrolysis of two ancient glucosinolates, 11 and 31. The hydrolysis reactions are unbalanced; water is an additional reactant and glucose, sulfate and hydrogen ion are also released during the myrosinase-catalyzed hydrolysis. A rearrangement precedes the formation of isothiocyanate (Blaˇzevi´c et al., 2020)." ; fabio:hasRepresentation ; a fabio:Figure .