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Molecular and Enzymatic Characterization of Flavonoid 3'-Hydroxylase of ×

Plants (Basel). 2021-09; 
Julia Weissensteiner, Christian Molitor, Silvija Marinovic, Lisa Führer, Syed Waqas Hassan, Olly Sanny Hutabarat, Andreas Spornberger, Karl Stich, Johanna Hausjell, Oliver Spadiut, Christian Haselmair-Gosch, Heidi Halbwirth
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Abstract

× (apple) accumulates particularly high amounts of dihydrochalcones in various tissues, with phloridzin (phloretin 2'--glucoside) being prevalent, although small amounts of 3-hydroxyphloretin and 3-hydroxyphloridzin are also constitutively present. The latter was shown to correlate with increased disease resistance of transgenic × plants. Two types of enzymes could be involved in 3-hydroxylation of dihydrochalcones: polyphenol oxidases or the flavonoid 3'-hydroxylase (F3'H), which catalyzes B-ring hydroxylation of flavonoids. We isolated two F3'H cDNA clones from apple leaves and tested recombinant F3'Hs for their substrate specificity. From the two isolated cDNA clones, only encoded a functionally activ... More

Keywords

Malus × domestica (apple), chalcones, dihydrochalcones, flavonoid 3-hydroxylation, flavonoids