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Identifying and creating pathways to improve biological lignin valorization

机译:确定并创造途径来改善生物木质素的价值

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Biological lignin valorization to fuels and value-added chemicals enables sustainable and economic biorefineries. While significant progress has been made, several major challenges arose due to high recalcitrance and heterogeneity of lignin, which needs to be addressed to improve lignin processing. This work provides an overview of biological lignin conversion and its regulation from a metabolic engineering and systems biology viewpoint. Biological lignin valorization includes three stages: lignin depolymerization, aromatics degradation, and target product biosynthesis. Ligninolytic microorganisms have an extensive enzymatic toolbox to break down the lignin and convert heterogeneous lignin derivatives to central intermediates, such as protocatechuate or catechol, through a peripheral pathway. These intermediates undergo ring cleavage via the beta-ketoadipate pathway and are ultimately transformed into metabolites by yielding acetyl-CoA for internal product biosynthesis, such as triacylglycerols, polyhydroxyalkanoates, etc. Bioprospecting will expand the knowledge base of ligninolytic microbial communities, strains, and enzymes to facilitate the understanding of aromatics metabolism. Systems biology analyses achieve an understanding of molecular and systems-level degradation mechanisms and metabolic pathways of lignin and aromatics. By identifying these mechanisms, synthetic biology provides promising approaches to create the lignin conversion pathways and engineer ligninolytic strains suitable as potential hosts for lignin conversion. Techno-economic analysis of biological lignin upgrading to coproducts in biorefineries will guide the implementation of lignin valorization by mitigating technical risk for scale-up and improving the profitability of biorefinery. By improving the understanding of biological lignin valorization, it should be possible to create biological lignin valorization route to effectively produce value-added products from lignin.
机译:对燃料和高附加值化学品进行生物木质素增值可实现可持续和经济的生物精炼厂。尽管已经取得了重大进展,但由于木质素的高度顽固性和异质性引起了一些主要挑战,需要解决这些问题以改善木质素的加工。这项工作从代谢工程和系统生物学的角度概述了生物木质素的转化及其调控。木质素生物价值化包括三个阶段:木质素解聚,芳香族化合物降解和目标产物的生物合成。木质素分解微生物具有广泛的酶促工具箱,可分解木质素并将异质木质素衍生物通过外围途径转化为中心中间体,如原儿茶酸或邻苯二酚。这些中间体通过β-酮己二酸酯途径进行环裂解,最终通过产生用于内部生物合成的乙酰辅酶A最终转化为代谢产物,例如三酰基甘油,聚羟基链烷酸酯等。生物勘探将扩大木质素分解微生物群落,菌株和酶的知识基础。促进对芳香族代谢的了解。系统生物学分析使人们了解了木质素和芳香族化合物的分子和系统级降解机理以及代谢途径。通过确定这些机制,合成生物学提供了有希望的方法来创建木质素转化途径,并工程改造适合作为木质素转化潜在宿主的木质素分解菌株。在生物精炼厂中将生物木质素升级为副产品的技术经济分析将通过降低扩大规模的技术风险并提高生物精炼厂的利润率来指导木质素增值的实施。通过增进对生物木质素增值的认识,应该有可能创造生物木质素增值途径,以有效地从木质素生产增值产品。

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