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      Critical enzyme reactions in aromatic catabolism for microbial lignin conversion

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          Lignin valorization: improving lignin processing in the biorefinery.

          Research and development activities directed toward commercial production of cellulosic ethanol have created the opportunity to dramatically increase the transformation of lignin to value-added products. Here, we highlight recent advances in this lignin valorization effort. Discovery of genetic variants in native populations of bioenergy crops and direct manipulation of biosynthesis pathways have produced lignin feedstocks with favorable properties for recovery and downstream conversion. Advances in analytical chemistry and computational modeling detail the structure of the modified lignin and direct bioengineering strategies for future targeted properties. Refinement of biomass pretreatment technologies has further facilitated lignin recovery, and this coupled with genetic engineering will enable new uses for this biopolymer, including low-cost carbon fibers, engineered plastics and thermoplastic elastomers, polymeric foams, fungible fuels, and commodity chemicals.
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            The catalytic valorization of lignin for the production of renewable chemicals.

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              Lignin biosynthesis.

              The lignin biosynthetic pathway has been studied for more than a century but has undergone major revisions over the past decade. Significant progress has been made in cloning new genes by genetic and combined bioinformatics and biochemistry approaches. In vitro enzymatic assays and detailed analyses of mutants and transgenic plants altered in the expression of lignin biosynthesis genes have provided a solid basis for redrawing the monolignol biosynthetic pathway, and structural analyses have shown that plant cell walls can tolerate large variations in lignin content and structure. In some cases, the potential value for agriculture of transgenic plants with modified lignin structure has been demonstrated. This review presents a current picture of monolignol biosynthesis, polymerization, and lignin structure.
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                Author and article information

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                Journal
                Nature Catalysis
                Nat Catal
                Springer Science and Business Media LLC
                2520-1158
                February 2022
                February 25 2022
                February 2022
                : 5
                : 2
                : 86-98
                Article
                10.1038/s41929-022-00747-w
                530221b2-457d-4790-908e-ab037608188d
                © 2022

                https://www.springer.com/tdm

                https://www.springer.com/tdm

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