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Introducing curcumin biosynthesis in Arabidopsis enhances lignocellulosic biomass processing.

Nat Plants. 2019-02; 
OyarcePaula,De MeesterBarbara,FonsecaFernando,de VriesLisanne,GoeminneGeert,PallidisAndreas,De RyckeRiet,TsujiYukiko,LiYanding,Van den BoschSander,SelsBert,RalphJohn,VanholmeRuben,Boerjan
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Custom Vector Construction Turmeric DCS (GenBank accession number AB495006.1) and CURS2 (GenBank accession number AB506762.1) genes were synthesized and cloned in a pUC57-Kan vector by GenScript. Get A Quote

摘要

Lignin is the main cause of lignocellulosic biomass recalcitrance to industrial enzymatic hydrolysis. By partially replacing the traditional lignin monomers by alternative ones, lignin extractability can be enhanced. To design a lignin that is easier to degrade under alkaline conditions, curcumin (diferuloylmethane) was produced in the model plant Arabidopsis thaliana via simultaneous expression of the turmeric (Curcuma longa) genes DIKETIDE-CoA SYNTHASE (DCS) and CURCUMIN SYNTHASE 2 (CURS2). The transgenic plants produced a plethora of curcumin- and phenylpentanoid-derived compounds with no negative impact on growth. Catalytic hydrogenolysis gave evidence that both curcumin and phenylpentanoids were incorp... More

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