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A Customizable Approach for the Enzymatic Production and Purification of Diterpenoid Natural Products
Published on: October 4, 2019
Functional characterization of double bond reductase involved in bisbibenzyl biosynthesis in Marchantia polymorpha
Akira Suzuki1, Naoki Kitaoka1, Uki Kikawada1
1Research Faculty of Agriculture, Hokkaido University, Sapporo, Hokkaido, Japan.
Abstract:
Bisbibenzyls are a family of characteristic secondary metabolites found in liverworts. In this study, we identified a double bond reductase (DBR) involved in the biosynthesis of bisbibenzyls in Marchantia polymorpha. Phylogenetic analysis suggests that Mp1g20080, which is highly homologous to the known DBR from Marchantia paleacea, is a candidate for the MpDBR in M. polymorpha. UV-C irradiation, which induces the accumulation of bisbibenzyls, significantly increased MpDBR expression. The recombinant MpDBR exhibited double bond reduction activity against p-coumaraldehyde. Wilting and brown thalli were observed in the Mpdbr knock-out lines, and metabolite analysis confirmed the accumulation of p-coumaric acid and a decrease in lunularic acid and bisbibenzyl levels in the Mpdbr knock-out lines. Our results demonstrated that Mp1g20080 is a major DBR in the bisbibenzyl biosynthetic pathway of M. polymorpha.
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