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Differences in S/G ratio in natural poplar variants do not predict catalytic depolymerization monomer yields

机译:天然杨树变种中S / G比的差异无法预测催化解聚单体的收率

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摘要

The ratio of syringyl (S) and guaiacyl (G) units in lignin has been regarded as a major factor in determining the maximum monomer yield from lignin depolymerization. This limit arises from the notion that G units are prone to C-C bond formation during lignin biosynthesis, resulting in less ether linkages that generate monomers. This study uses reductive catalytic fractionation (RCF) in flow-through reactors as an analytical tool to depolymerize lignin in poplar with naturally varying S/G ratios, and directly challenges the common conception that the S/G ratio predicts monomer yields. Rather, this work suggests that the plant controls C-O and C-C bond content by regulating monomer transport during lignin biosynthesis. Overall, our results indicate that additional factors beyond the monomeric composition of native lignin are important in developing a fundamental understanding of lignin biosynthesis.
机译:木质素中丁香烯基(S)和愈创木脂基(G)的比例被认为是决定木质素解聚最大单体产率的主要因素。该限制源自以下观念:G单元在木质素生物合成过程中易于形成C-C键,从而导致生成单体的醚键减少。这项研究使用流通式反应器中的还原催化分馏(RCF)作为分析工具,以自然变化的S / G比解聚杨树中的木质素,并直接挑战了S / G比可预测单体收率的普遍观念。相反,这项工作表明该植物通过在木质素生物合成过程中调节单体转运来控制C-O和C-C键含量。总体而言,我们的结果表明,除了天然木质素单体组成以外的其他因素对于建立木质素生物合成的基本理解也很重要。

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