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Molecular and Functional Characterization of the Key Proanthocyanidin Pathway Enzymes Anthocyanidin Reductases and Leucoanthocyanidin Reductases in . | LitMetric

The litchi genome has five anthocyanidin reductase () and two leucoanthocyanidin reductase () members. The high expression of and is significantly positively correlated with the abundant proanthocyanidins and (-)-epicatechin (EC) in the pericarp, leaf, root, etc. The recombinant LcANR1a/2a converts cyanidin to both EC and (+)-catechin (CT) (EC:CT ≈ 1:1) and converts delphindin to (+)-gallocatechin and (-)-epigallocatechin; the recombinant LcLAR1/2 converts leucocyanidin to CT. The enzymatic kinetics of the four enzymes are presented, with the respective of LcLAR1/2 to leucocyanidin, 19 and 34 μM, and the , 7 and 5 nmol min mg, which are rarely reported for other plants. Overexpression of and in mutant recovered EC and CT biosynthesis respectively in the seeds; however, the EC-only recovery by LcANR1a/2a is inconsistent with their activity, indicating that the ANR/LAR function is dependent on characteristic molecular contexts in plants and correlated to the distinct PA profiles in litchi.

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http://dx.doi.org/10.1021/acs.jafc.4c06996DOI Listing

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