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Literature summary for 1.14.14.38 extracted from

  • Mikkelsen, M.D.; Halkier, B.A.
    Metabolic engineering of valine- and isoleucine-derived glucosinolates in Arabidopsis expressing CYP79D2 from Cassava (2003), Plant Physiol., 131, 773-779.
    View publication on PubMedView publication on EuropePMC

Application

Application Comment Organism
agriculture expression of CYP79D2 from cassava in Arabidopsis thaliana results in the production of valine- and isoleucine-derived glucosinolates not normally found in this ecotype. The transgenic lines show no morphological phenotype, and the level of endogenous glucosinolates is not affected. The novel glucosinolates constitute up to 35% of the total glucosinolate content in mature rosette leaves and up to 48% in old leaves. At increased concentrations of these glucosinolates, the proportion of Val-derived glucosinolates decreases. As the isothiocyanates produced from the Val- and isoleucine-derived glucosinolates are volatile, metabolically engineered plants producing these glucosinolates have acquired novel properties with great potential for improvement of resistance to herbivorous insects and for biofumigation Manihot esculenta

Cloned(Commentary)

Cloned (Comment) Organism
expression in Arabidopsis thaliana Manihot esculenta

Protein Variants

Protein Variants Comment Organism
additional information expression of CYP79D2 from cassava in Arabidopsis thaliana results in the production of valine- and isoleucine-derived glucosinolates not normally found in this ecotype. The transgenic lines show no morphological phenotype, and the level of endogenous glucosinolates is not affected. The novel glucosinolates constitute up to 35% of the total glucosinolate content in mature rosette leaves and up to 48% in old leaves. At increased concentrations of these glucosinolates, the proportion of Val-derived glucosinolates decreases. As the isothiocyanates produced from the Val- and isoleucine-derived glucosinolates are volatile, metabolically engineered plants producing these glucosinolates have acquired novel properties with great potential for improvement of resistance to herbivorous insects and for biofumigation Manihot esculenta

Organism

Organism UniProt Comment Textmining
Manihot esculenta Q9M7B7 isoform CYP79D2
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